mirror of https://github.com/BOINC/boinc.git
484 lines
15 KiB
C++
484 lines
15 KiB
C++
// This file is part of BOINC.
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// http://boinc.berkeley.edu
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// Copyright (C) 2007 University of California
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//
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// BOINC is free software; you can redistribute it and/or modify it
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// under the terms of the GNU Lesser General Public License
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// as published by the Free Software Foundation,
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// either version 3 of the License, or (at your option) any later version.
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//
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// BOINC is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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// See the GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with BOINC. If not, see <http://www.gnu.org/licenses/>.
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#if defined(_WIN32) && !defined(__STDWX_H__) && !defined(_BOINC_WIN_) && !defined(_AFX_STDAFX_H_)
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#include "boinc_win.h"
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#endif
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#ifndef _USING_FCGI_
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#include "boinc_fcgi.h"
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#else
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#include <cstdio>
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#endif
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#include <cstring>
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#include <cstdlib>
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#include "error_numbers.h"
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#include "filesys.h"
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#include "parse.h"
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#include "str_util.h"
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#ifdef _WIN32
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#include "win_util.h"
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#endif
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#include "coproc.h"
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#ifndef _USING_FCGI_
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using std::perror;
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#endif
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#ifndef _USING_FCGI_
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void COPROC::write_xml(MIOFILE& f) {
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f.printf(
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"<coproc>\n"
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" <type>%s</type>\n"
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" <count>%d</count>\n"
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"</coproc>\n",
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type, count
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);
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}
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#endif
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int COPROC_REQ::parse(MIOFILE& fin) {
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char buf[1024];
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strcpy(type, "");
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count = 0;
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while (fin.fgets(buf, sizeof(buf))) {
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if (match_tag(buf, "</coproc>")) {
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if (!strlen(type)) return ERR_XML_PARSE;
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return 0;
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}
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if (parse_str(buf, "<type>", type, sizeof(type))) continue;
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if (parse_double(buf, "<count>", count)) continue;
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}
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return ERR_XML_PARSE;
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}
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int COPROC::parse(MIOFILE& fin) {
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char buf[1024];
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strcpy(type, "");
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count = 0;
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used = 0;
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req_secs = 0;
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estimated_delay = 0;
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req_instances = 0;
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while (fin.fgets(buf, sizeof(buf))) {
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if (match_tag(buf, "</coproc>")) {
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if (!strlen(type)) return ERR_XML_PARSE;
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return 0;
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}
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if (parse_str(buf, "<type>", type, sizeof(type))) continue;
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if (parse_int(buf, "<count>", count)) continue;
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if (parse_double(buf, "<req_secs>", req_secs)) continue;
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if (parse_double(buf, "<req_instances>", req_instances)) continue;
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if (parse_double(buf, "<estimated_delay>", estimated_delay)) continue;
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}
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return ERR_XML_PARSE;
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}
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void COPROCS::summary_string(char* buf, int len) {
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char bigbuf[8192], buf2[1024];
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strcpy(bigbuf, "");
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for (unsigned int i=0; i<coprocs.size(); i++) {
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COPROC* cp = coprocs[i];
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if (!strcmp(cp->type, "CUDA")) {
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COPROC_CUDA* cp2 = (COPROC_CUDA*) cp;
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int mem = (int)(cp2->prop.dtotalGlobalMem/MEGA);
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sprintf(buf2, "[CUDA|%s|%d|%dMB|%d]",
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cp2->prop.name, cp2->count, mem, cp2->display_driver_version
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);
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strcat(bigbuf, buf2);
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} else if (!strcmp(cp->type, "ATI")){
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COPROC_ATI* cp2 =(COPROC_ATI*) cp;
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sprintf(buf2,"[CAL|%s|%d|%dMB|%s]",
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cp2->name, cp2->count, cp2->attribs.localRAM, cp2->version
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);
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strcat(bigbuf,buf2);
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}
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}
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bigbuf[len-1] = 0;
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strcpy(buf, bigbuf);
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}
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int COPROCS::parse(MIOFILE& fin) {
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char buf[1024];
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while (fin.fgets(buf, sizeof(buf))) {
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if (match_tag(buf, "</coprocs>")) {
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return 0;
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}
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if (strstr(buf, "<coproc_cuda>")) {
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COPROC_CUDA* cc = new COPROC_CUDA;
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int retval = cc->parse(fin);
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if (!retval) {
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coprocs.push_back(cc);
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}
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}
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if (strstr(buf, "<coproc_ati>")) {
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COPROC_ATI* cc = new COPROC_ATI;
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int retval = cc->parse(fin);
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if (!retval) {
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coprocs.push_back(cc);
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}
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}
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}
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return ERR_XML_PARSE;
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}
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void COPROCS::write_xml(MIOFILE& mf) {
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#ifndef _USING_FCGI_
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mf.printf(" <coprocs>\n");
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for (unsigned i=0; i<coprocs.size(); i++) {
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COPROC* c = coprocs[i];
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c->write_xml(mf);
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}
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mf.printf(" </coprocs>\n");
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#endif
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}
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COPROC* COPROCS::lookup(const char* type) {
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for (unsigned int i=0; i<coprocs.size(); i++) {
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COPROC* cp = coprocs[i];
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if (!strcmp(type, cp->type)) return cp;
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}
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return NULL;
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}
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#ifdef _WIN32
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#endif
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void COPROC_CUDA::description(char* buf) {
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char vers[256];
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if (display_driver_version) {
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sprintf(vers, "%d", display_driver_version);
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} else {
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strcpy(vers, "unknown");
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}
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sprintf(buf, "%s (driver version %s, CUDA version %d, compute capability %d.%d, %.0fMB, %.0f GFLOPS peak)",
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prop.name, vers, cuda_version, prop.major, prop.minor,
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prop.totalGlobalMem/(1024.*1024.), peak_flops()/1e9
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);
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}
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#ifndef _USING_FCGI_
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void COPROC_CUDA::write_xml(MIOFILE& f) {
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f.printf(
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"<coproc_cuda>\n"
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" <count>%d</count>\n"
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" <name>%s</name>\n"
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" <req_secs>%f</req_secs>\n"
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" <req_instances>%f</req_instances>\n"
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" <estimated_delay>%f</estimated_delay>\n"
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" <drvVersion>%d</drvVersion>\n"
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" <cudaVersion>%d</cudaVersion>\n"
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" <totalGlobalMem>%u</totalGlobalMem>\n"
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" <sharedMemPerBlock>%u</sharedMemPerBlock>\n"
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" <regsPerBlock>%d</regsPerBlock>\n"
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" <warpSize>%d</warpSize>\n"
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" <memPitch>%u</memPitch>\n"
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" <maxThreadsPerBlock>%d</maxThreadsPerBlock>\n"
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" <maxThreadsDim>%d %d %d</maxThreadsDim>\n"
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" <maxGridSize>%d %d %d</maxGridSize>\n"
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" <totalConstMem>%u</totalConstMem>\n"
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" <major>%d</major>\n"
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" <minor>%d</minor>\n"
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" <clockRate>%d</clockRate>\n"
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" <textureAlignment>%u</textureAlignment>\n"
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" <deviceOverlap>%d</deviceOverlap>\n"
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" <multiProcessorCount>%d</multiProcessorCount>\n"
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"</coproc_cuda>\n",
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count,
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prop.name,
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req_secs,
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req_instances,
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estimated_delay,
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display_driver_version,
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cuda_version,
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(unsigned int)prop.totalGlobalMem,
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(unsigned int)prop.sharedMemPerBlock,
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prop.regsPerBlock,
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prop.warpSize,
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(unsigned int)prop.memPitch,
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prop.maxThreadsPerBlock,
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prop.maxThreadsDim[0], prop.maxThreadsDim[1], prop.maxThreadsDim[2],
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prop.maxGridSize[0], prop.maxGridSize[1], prop.maxGridSize[2],
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(unsigned int)prop.totalConstMem,
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prop.major,
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prop.minor,
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prop.clockRate,
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(unsigned int)prop.textureAlignment,
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prop.deviceOverlap,
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prop.multiProcessorCount
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);
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}
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#endif
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void COPROC_CUDA::clear() {
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count = 0;
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used = 0;
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req_secs = 0;
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req_instances = 0;
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estimated_delay = -1; // mark as absent
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cuda_version = 0;
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display_driver_version = 0;
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strcpy(prop.name, "");
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prop.totalGlobalMem = 0;
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prop.sharedMemPerBlock = 0;
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prop.regsPerBlock = 0;
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prop.warpSize = 0;
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prop.memPitch = 0;
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prop.maxThreadsPerBlock = 0;
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prop.maxThreadsDim[0] = 0;
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prop.maxThreadsDim[1] = 0;
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prop.maxThreadsDim[2] = 0;
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prop.maxGridSize[0] = 0;
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prop.maxGridSize[1] = 0;
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prop.maxGridSize[2] = 0;
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prop.clockRate = 0;
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prop.totalConstMem = 0;
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prop.major = 0;
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prop.minor = 0;
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prop.textureAlignment = 0;
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prop.deviceOverlap = 0;
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prop.multiProcessorCount = 0;
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}
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int COPROC_CUDA::parse(MIOFILE& fin) {
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char buf[1024], buf2[256];
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clear();
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while (fin.fgets(buf, sizeof(buf))) {
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if (strstr(buf, "</coproc_cuda>")) {
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return 0;
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}
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if (parse_int(buf, "<count>", count)) continue;
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if (parse_double(buf, "<req_secs>", req_secs)) continue;
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if (parse_double(buf, "<req_instances>", req_instances)) continue;
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if (parse_double(buf, "<estimated_delay>", estimated_delay)) continue;
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if (parse_str(buf, "<name>", prop.name, sizeof(prop.name))) continue;
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if (parse_int(buf, "<drvVersion>", display_driver_version)) continue;
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if (parse_int(buf, "<cudaVersion>", cuda_version)) continue;
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if (parse_double(buf, "<totalGlobalMem>", prop.dtotalGlobalMem)) continue;
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if (parse_int(buf, "<sharedMemPerBlock>", (int&)prop.sharedMemPerBlock)) continue;
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if (parse_int(buf, "<regsPerBlock>", prop.regsPerBlock)) continue;
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if (parse_int(buf, "<warpSize>", prop.warpSize)) continue;
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if (parse_int(buf, "<memPitch>", (int&)prop.memPitch)) continue;
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if (parse_int(buf, "<maxThreadsPerBlock>", prop.maxThreadsPerBlock)) continue;
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if (parse_str(buf, "<maxThreadsDim>", buf2, sizeof(buf2))) {
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// can't use sscanf here (FCGI)
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//
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prop.maxThreadsDim[0] = atoi(buf2);
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char* p = strchr(buf2, ' ');
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if (p) {
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p++;
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prop.maxThreadsDim[1] = atoi(p);
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p = strchr(p, ' ');
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if (p) {
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p++;
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prop.maxThreadsDim[2] = atoi(p);
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}
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}
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continue;
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}
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if (parse_str(buf, "<maxGridSize>", buf2, sizeof(buf2))) {
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prop.maxGridSize[0] = atoi(buf2);
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char* p = strchr(buf2, ' ');
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if (p) {
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p++;
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prop.maxGridSize[1] = atoi(p);
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p = strchr(p, ' ');
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if (p) {
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p++;
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prop.maxGridSize[2] = atoi(p);
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}
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}
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continue;
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}
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if (parse_int(buf, "<clockRate>", prop.clockRate)) continue;
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if (parse_int(buf, "<totalConstMem>", (int&)prop.totalConstMem)) continue;
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if (parse_int(buf, "<major>", prop.major)) continue;
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if (parse_int(buf, "<minor>", prop.minor)) continue;
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if (parse_int(buf, "<textureAlignment>", (int&)prop.textureAlignment)) continue;
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if (parse_int(buf, "<deviceOverlap>", prop.deviceOverlap)) continue;
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if (parse_int(buf, "<multiProcessorCount>", prop.multiProcessorCount)) continue;
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}
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return ERR_XML_PARSE;
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}
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////////////////// ATI STARTS HERE /////////////////
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#ifndef _USING_FCGI_
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void COPROC_ATI::write_xml(MIOFILE& f) {
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f.printf(
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"<coproc_ati>\n"
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);
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f.printf(
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" <count>%d</count>\n"
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" <name>%s</name>\n"
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" <req_secs>%f</req_secs>\n"
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" <req_instances>%f</req_instances>\n"
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" <estimated_delay>%f</estimated_delay>\n"
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" <target>%d</target>\n"
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" <localRAM>%d</localRAM>\n"
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" <uncachedRemoteRAM>%d</uncachedRemoteRAM>\n"
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" <cachedRemoteRAM>%d</cachedRemoteRAM>\n"
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" <engineClock>%u</engineClock>\n"
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" <memoryClock>%d</memoryClock>\n"
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" <wavefrontSize>%d</wavefrontSize>\n"
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" <numberOfSIMD>%d</numberOfSIMD>\n"
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" <doublePrecision>%d</doublePrecision>\n"
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" <pitch_alignment>%d</pitch_alignment>\n"
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" <surface_alignment>%d</surface_alignment>\n"
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" <maxResource1DWidth>%d</maxResource1DWidth>\n"
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" <maxResource2DWidth>%d</maxResource2DWidth>\n"
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" <maxResource2DHeight>%d</maxResource2DHeight>\n"
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" <CALVersion>%s</CALVersion>\n",
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count,
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name,
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req_secs,
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req_instances,
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estimated_delay,
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attribs.target,
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attribs.localRAM,
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attribs.uncachedRemoteRAM,
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attribs.cachedRemoteRAM,
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attribs.engineClock,
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attribs.memoryClock,
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attribs.wavefrontSize,
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attribs.numberOfSIMD,
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attribs.doublePrecision,
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attribs.pitch_alignment,
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attribs.surface_alignment,
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info.maxResource1DWidth,
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info.maxResource2DWidth,
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info.maxResource2DHeight,
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version
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);
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if (atirt_detected) {
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f.printf(" <atirt_detected/>\n");
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}
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if (amdrt_detected) {
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f.printf(" <amdrt_detected/>\n");
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}
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f.printf("</coproc_ati>\n");
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};
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#endif
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void COPROC_ATI::clear() {
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count = 0;
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used = 0;
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req_secs = 0;
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req_instances = 0;
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estimated_delay = -1;
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strcpy(name, "");
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strcpy(version, "");
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atirt_detected = false;
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amdrt_detected = false;
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memset(&attribs, 0, sizeof(attribs));
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memset(&info, 0, sizeof(info));
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}
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int COPROC_ATI::parse(MIOFILE& fin) {
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char buf[1024];
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int n;
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clear();
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while (fin.fgets(buf, sizeof(buf))) {
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if (strstr(buf, "</coproc_ati>")) return 0;
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if (parse_int(buf, "<count>", count)) continue;
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if (parse_str(buf, "<name>", name, sizeof(name))) continue;
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if (parse_double(buf, "<req_secs>", req_secs)) continue;
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if (parse_double(buf, "<req_instances>", req_instances)) continue;
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if (parse_double(buf, "<estimated_delay>", estimated_delay)) continue;
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if (parse_int(buf, "<target>", n)) {
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attribs.target = (CALtarget)n;
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continue;
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}
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if (parse_int(buf, "<localRAM>", n)) {
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attribs.localRAM = n;
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continue;
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}
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if (parse_int(buf, "<uncachedRemoteRAM>", n)) {
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attribs.uncachedRemoteRAM = n;
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continue;
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}
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if (parse_int(buf, "<cachedRemoteRAM>", n)) {
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attribs.cachedRemoteRAM = n;
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continue;
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}
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if (parse_int(buf, "<engineClock>", n)) {
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attribs.engineClock = n;
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continue;
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}
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if (parse_int(buf, "<memoryClock>", n)) {
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attribs.memoryClock = n;
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continue;
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}
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if (parse_int(buf, "<wavefrontSize>", n)) {
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attribs.wavefrontSize = n;
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continue;
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}
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if (parse_int(buf, "<numberOfSIMD>" , n)) {
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attribs.numberOfSIMD = n;
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continue;
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}
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if (parse_int(buf, "<doublePrecision>", n)) {
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attribs.doublePrecision = n?CAL_TRUE:CAL_FALSE;
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continue;
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}
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if (parse_int(buf, "<pitch_alignment>", n)) {
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attribs.pitch_alignment = n;
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continue;
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}
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if (parse_int(buf, "<surface_alignment>", n)) {
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attribs.surface_alignment = n;
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continue;
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}
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if (parse_int(buf, "<maxResource1DWidth>", n)) {
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info.maxResource1DWidth = n;
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continue;
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}
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if (parse_int(buf, "<maxResource2DWidth>", n)) {
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info.maxResource2DWidth = n;
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continue;
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}
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if (parse_int(buf, "<maxResource2DHeight>", n)) {
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info.maxResource2DHeight = n;
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continue;
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}
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if (parse_bool(buf, "amdrt_detected", amdrt_detected)) continue;
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if (parse_bool(buf, "atirt_detected", atirt_detected)) continue;
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if (parse_str(buf, "<CALVersion>", version, sizeof(version))) continue;
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}
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return ERR_XML_PARSE;
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}
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void COPROC_ATI::description(char* buf) {
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sprintf(buf, "%s (CAL version %s, %.0fMB, %.0f GFLOPS peak)",
|
|
name, version, attribs.localRAM/1024.*1024., peak_flops()/1.e9
|
|
);
|
|
}
|