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[/] [openrisc/] [trunk/] [or1ksim/] [testsuite/] [test-code/] [lib-inttest/] [lib-inttest.c] - Blame information for rev 593

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1 433 jeremybenn
/* lib-inttest.c. Test of Or1ksim library interrupt funcs.
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   Copyright (C) 1999-2006 OpenCores
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   Copyright (C) 2010 Embecosm Limited
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   Contributors various OpenCores participants
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   Contributor Jeremy Bennett <jeremy.bennett@embecosm.com>
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   This file is part of OpenRISC 1000 Architectural Simulator.
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   This program is free software; you can redistribute it and/or modify it
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   under the terms of the GNU General Public License as published by the Free
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   Software Foundation; either version 3 of the License, or (at your option)
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   any later version.
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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 MERCHANTABILITY or
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   FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
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   more details.
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   You should have received a copy of the GNU General Public License along
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   with this program.  If not, see <http:  www.gnu.org/licenses/>.  */
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/* ----------------------------------------------------------------------------
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   This code is commented throughout for use with Doxygen.
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   --------------------------------------------------------------------------*/
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#include <stddef.h>
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include "or1ksim.h"
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/*! Number of interrupts in PIC */
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#define  NUM_INTS  32
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/*! Number of the PICSR SPR. */
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#define  SPR_PICSR  0x4802
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/*! Flag indicating if we are using level sensitive interrupts */
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static int  level_sensitive_p;
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/*! Vector of interrupt numbers. */
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static int *intv;
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/*! Count of interrupts. */
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static int  intc = 0;
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/*! Next interrupt */
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static int  next_int = 0;
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/* --------------------------------------------------------------------------*/
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/*!Read upcall
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   Upcall from Or1ksim to read a word from an external peripheral. If called
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   this will trigger an interrupt.
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   We may get an end case where we are asked for an interrupt, but have no
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   more to give. We silently ignore this - it is just due to allowing the
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   target program enough time to finish.
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   @param[in]  class_ptr  A handle pass back from the initalization. Intended
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                          for C++ callers, not used here.
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   @param[in]  addr       Address to read from. Ignored here.
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   @param[in]  mask       Byte mask for the read. Ignored here.
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   @param[out] rdata      Buffer for the data read. Ignored here.
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   @param[in]  data_len   Number of bytes in mask and rdata.
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   @return  Zero on success, non-zero on failure. Always zero here.          */
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/* --------------------------------------------------------------------------*/
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static int
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read_upcall (void              *class_ptr,
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             unsigned long int  addr,
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             unsigned char      mask[],
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             unsigned char      rdata[],
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             int                data_len)
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{
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  if (next_int < intc)
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    {
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      int  inum = intv[next_int++];
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      printf ("Triggering interrupt %d\n", inum);
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      if (level_sensitive_p)
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        {
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          or1ksim_interrupt_set (inum);
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        }
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      else
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        {
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          or1ksim_interrupt (inum);
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        }
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    }
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  return  0;                     /* Success */
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}       /* read_upcall () */
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/* --------------------------------------------------------------------------*/
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/*!Write upcall
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   Upcall from Or1ksim to write a word to an external peripheral. If called
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   this will clear an interrupt. The data is the number of the interrupt to
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   clear.
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   @param[in] class_ptr  A handle pass back from the initalization. Intended
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                         for C++ callers, not used here.
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   @param[in] addr       Address to write to. Ignored here.
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   @param[in] mask       Byte mask for the write. Ignored here.
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   @param[in] wdata      The data to write. Ignored here.
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   @param[in] data_len   Number of bytes in mask and rdata.
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   @return  Zero on success, non-zero on failure. Always zero here.          */
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/* --------------------------------------------------------------------------*/
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static int
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write_upcall (void              *class_ptr,
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              unsigned long int  addr,
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              unsigned char      mask[],
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              unsigned char      wdata[],
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              int                data_len)
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{
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  /* Extract the inum */
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  int inum = wdata[0];
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  printf ("Clearing interrupt %d\n", inum);
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  if (level_sensitive_p)
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    {
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      or1ksim_interrupt_clear (inum);
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    }
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  else
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    {
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      unsigned long int  picsr;
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      if (!or1ksim_read_spr (SPR_PICSR, &picsr))
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        {
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          fprintf (stderr, "ERROR failed to read PICSR: Exiting.\n");
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          exit (1);
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        }
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      picsr &= ~(1UL << inum);
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      printf ("Cleared PICSR is 0x%08lx\n", picsr);
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      if (!or1ksim_write_spr (SPR_PICSR, picsr))
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        {
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          fprintf (stderr, "ERROR failed to write PICSR: Exiting.\n");
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          exit (1);
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        }
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    }
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  return  0;                     /* Success */
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}       /* write_upcall () */
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/* --------------------------------------------------------------------------*/
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/*!Main program
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   Build an or1ksim program using the library which loads a program and config
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   from the command line, and then drives interrupts. Usage:
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   lib-inttest <config-file> <image> -l|-e <int #> <int #> ...
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   <image> is run continuously. It requests that the next interrupt event be
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   triggered by a read upcall. Clearing an interrupt occurs when a write
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   upcall is received.
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   The third argument specifies whether the level senstive (-l) or edge
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   triggered (-e) mechanism should be used for setting and clearing
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   interrupts.
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   @param[in] argc  Number of elements in argv
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   @param[in] argv  Vector of program name and arguments
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   @return  Return code for the program.                                     */
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/* --------------------------------------------------------------------------*/
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int
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main (int   argc,
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      char *argv[])
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{
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  const int  INT_OFF = 4;               /* Offset in argv of interrupts */
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  int        i;                         /* General counter */
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  /* Parse args */
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  if (argc < (INT_OFF + 1))
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    {
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      fprintf (stderr,
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               "usage: lib-inttest-level <config-file> <image> -l|-e "
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               "<int #> <int #> ...\n");
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      return  1;
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    }
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  /* What type of interrupt? */
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  if (0 == strcmp ("-l", argv[3]))
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    {
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      level_sensitive_p = 1;
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    }
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  else if (0 == strcmp ("-e", argv[3]))
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    {
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      level_sensitive_p = 0;
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    }
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  else
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    {
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      fprintf (stderr, "ERROR: Must specify -l or -e: exiting\n");
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      exit (1);
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    }
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  /* Get all the interrupts sorted out into the vector. We hold them with one
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     greater than absolute value, so we can distinguish between +0 and -0. */
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  intv = malloc ((argc - INT_OFF) * sizeof (int));
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  for (i = INT_OFF; i < argc; i++)
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    {
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      int  inum = atoi (argv[i]);
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      if ((inum <= 0) || (NUM_INTS <= inum))
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      {
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        printf ("Warning: Invalid interrupt # %d to raise: Exiting.\n", inum);
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        exit (1);
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      }
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      intv[i - INT_OFF] = inum;
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    }
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  /* Global counters */
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  intc     = argc - INT_OFF;
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  next_int = 0;
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  /* Dummy argv array to pass arguments to or1ksim_init. Varies depending on
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     whether an image file is specified. */
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  int   dummy_argc;
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  char *dummy_argv[5];
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  dummy_argv[0] = "libsim";
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  dummy_argv[1] = "-q";
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  dummy_argv[2] = "-f";
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  dummy_argv[3] = argv[1];
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  dummy_argv[4] = argv[2];
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  dummy_argc = 5;
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  /* Initialize the program. Put the initialization message afterwards, or it
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     will get swamped by the Or1ksim header. */
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  if (0 == or1ksim_init (dummy_argc, dummy_argv, NULL, &read_upcall,
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                         &write_upcall))
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    {
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      printf ("Initalization succeeded.\n");
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    }
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  else
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    {
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      printf ("ERROR: Initalization failed.\n");
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      free (intv);
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      exit (1);
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    }
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  /* Run in bursts of 1ms until all interrupts have been set and cleared. */
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  do
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    {
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      if (OR1KSIM_RC_OK != or1ksim_run (1.0e-3))
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        {
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          printf ("ERROR: run failed\n");
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          free (intv);
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          exit (1);
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        }
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    }
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  while (next_int < intc);
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  /* One more burst to allow the device driver time to complete. */
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  if (OR1KSIM_RC_OK != or1ksim_run (1.0e-3))
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    {
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      printf ("ERROR: run failed\n");
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      free (intv);
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      exit (1);
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    }
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  /* All interrupts should have been handled. */
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  free (intv);
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  printf ("Test completed successfully.\n");
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  return  0;
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}       /* main () */

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