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[/] [xulalx25soc/] [trunk/] [sw/] [zipstate.cpp] - Rev 33
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//////////////////////////////////////////////////////////////////////////////// // // Filename: zipstate.v // // Project: XuLA2 board // // Purpose: To get a quick (understandable) peek at what the ZipCPU // is up to without stopping the CPU. This is basically // identical to a "wbregs cpu" command, save that the bit fields of the // result are broken out into something more human readable. // // // Creator: Dan Gisselquist, Ph.D. // Gisselquist Technology, LLC // //////////////////////////////////////////////////////////////////////////////// // // Copyright (C) 2015, Gisselquist Technology, LLC // // This program is free software (firmware): you can redistribute it and/or // modify it under the terms of the GNU General Public License as published // by the Free Software Foundation, either version 3 of the License, or (at // your option) any later version. // // This program is distributed in the hope that it will be useful, but WITHOUT // ANY WARRANTY; without even the implied warranty of MERCHANTIBILITY or // FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License // for more details. // // License: GPL, v3, as defined and found on www.gnu.org, // http://www.gnu.org/licenses/gpl.html // // //////////////////////////////////////////////////////////////////////////////// // // // #include <stdio.h> #include <stdlib.h> #include <unistd.h> #include <strings.h> #include <ctype.h> #include <string.h> #include <signal.h> #include <assert.h> #include "llcomms.h" #include "usbi.h" #include "port.h" #include "regdefs.h" FPGA *m_fpga; void closeup(int v) { m_fpga->kill(); exit(0); } unsigned int cmd_read(FPGA *fpga, int r) { const unsigned int MAXERR = 1000; unsigned int errcount = 0; unsigned int s; fpga->writeio(R_ZIPCTRL, CPU_HALT|(r&0x03f)); while((((s = fpga->readio(R_ZIPCTRL))&CPU_STALL)== 0)&&(errcount<MAXERR)) errcount++; if (errcount >= MAXERR) { printf("ERR: errcount(%d) >= MAXERR on cmd_read(a=%02x)\n", errcount, r); printf("ZIPCTRL = 0x%08x", s); if ((s & 0x0200)==0) printf(" STALL"); if (s & 0x0400) printf(" HALTED"); if ((s & 0x03000)==0x01000) printf(" SW-HALT"); else { if (s & 0x01000) printf(" SLEEPING"); if (s & 0x02000) printf(" GIE(UsrMode)"); } printf("\n"); exit(EXIT_FAILURE); } return fpga->readio(R_ZIPDATA); } void usage(void) { printf("USAGE: zipstate\n"); } int main(int argc, char **argv) { int skp=0, port = FPGAPORT; bool use_usb = true, long_state = false; unsigned int v; skp=1; for(int argn=0; argn<argc-skp; argn++) { if (argv[argn+skp][0] == '-') { if (argv[argn+skp][1] == 'u') use_usb = true; else if (argv[argn+skp][1] == 'l') long_state = true; else if (argv[argn+skp][1] == 'p') { use_usb = false; if (isdigit(argv[argn+skp][2])) port = atoi(&argv[argn+skp][2]); } skp++; argn--; } else argv[argn] = argv[argn+skp]; } argc -= skp; if (use_usb) m_fpga = new FPGA(new USBI()); else m_fpga = new FPGA(new NETCOMMS(FPGAHOST, port)); if (!long_state) { v = m_fpga->readio(R_ZIPCTRL); printf("0x%08x: ", v); if (v & 0x0080) printf("PINT "); // if (v & 0x0100) printf("STEP "); // self resetting if((v & 0x00200)==0) printf("STALL "); if (v & 0x00400) printf("HALTED "); if((v & 0x03000)==0x01000) { printf("SW-HALT"); } else { if (v & 0x01000) printf("SLEEPING "); if (v & 0x02000) printf("GIE(UsrMode) "); } // if (v & 0x0800) printf("CLR-CACHE "); printf("\n"); } else { printf("Reading the long-state ...\n"); for(int i=0; i<14; i++) { printf("sR%-2d: 0x%08x ", i, cmd_read(m_fpga, i)); if ((i&3)==3) printf("\n"); } printf("sCC : 0x%08x ", cmd_read(m_fpga, 14)); printf("sPC : 0x%08x ", cmd_read(m_fpga, 15)); printf("\n\n"); for(int i=0; i<14; i++) { printf("uR%-2d: 0x%08x ", i, cmd_read(m_fpga, i+16)); if ((i&3)==3) printf("\n"); } printf("uCC : 0x%08x ", cmd_read(m_fpga, 14+16)); printf("uPC : 0x%08x ", cmd_read(m_fpga, 15+16)); printf("\n\n"); } delete m_fpga; }
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