328 lines
10 KiB
C++
328 lines
10 KiB
C++
#include "global.h"
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#include "ArchHooks_darwin.h"
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#include "RageLog.h"
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#include "RageThreads.h"
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#include "RageTimer.h"
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#include "archutils/Darwin/Crash.h"
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#include "archutils/Unix/CrashHandler.h"
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#include "archutils/Unix/SignalHandler.h"
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#include "StepMania.h"
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#define Random Random_ // work around namespace pollution
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#include <Carbon/Carbon.h>
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#undef Random_
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#include <mach/thread_act.h>
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#include <sys/types.h>
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#include <sys/sysctl.h>
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#include <sys/time.h>
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/* You would think that these would be defined somewhere. */
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enum
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{
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kMacOSX_10_2 = 0x1020,
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kMacOSX_10_3 = 0x1030
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};
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#if 0 // Time critical stuff
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static thread_time_constraint_policy g_oldttcpolicy;
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static float g_fStartedTimeCritAt;
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#endif
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static bool IsFatalSignal( int signal )
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{
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switch( signal )
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{
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case SIGINT:
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case SIGTERM:
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case SIGHUP:
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return false;
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default:
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return true;
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}
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}
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static void DoCleanShutdown( int signal, siginfo_t *si, const ucontext_t *uc )
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{
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if( IsFatalSignal(signal) )
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return;
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/* ^C. */
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ExitGame();
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}
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static void DoCrashSignalHandler( int signal, siginfo_t *si, const ucontext_t *uc )
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{
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/* Don't dump a debug file if the user just hit ^C. */
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if( !IsFatalSignal(signal) )
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return;
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CrashSignalHandler( signal, si, uc );
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/* not reached */
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}
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ArchHooks_darwin::ArchHooks_darwin()
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{
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CrashHandlerHandleArgs(g_argc, g_argv);
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/* First, handle non-fatal termination signals. */
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SignalHandler::OnClose( DoCleanShutdown );
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SignalHandler::OnClose( DoCrashSignalHandler );
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TimeCritMutex = new RageMutex("TimeCritMutex");
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}
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ArchHooks_darwin::~ArchHooks_darwin()
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{
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delete TimeCritMutex;
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}
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#define CASE_GESTALT_M(str,code,result) case gestalt##code: str = result; break
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#define CASE_GESTALT(str,code) CASE_GESTALT_M(str, code, #code)
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void ArchHooks_darwin::DumpDebugInfo()
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{
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CString systemVersion;
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long ram;
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long vRam;
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long processorSpeed;
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CString processor;
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long numProcessors;
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CString machine;
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char *temp;
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OSErr err = noErr;
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long code;
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/* Get system version */
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err = Gestalt(gestaltSystemVersion, &code);
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if (err == noErr)
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{
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systemVersion = "Mac OS X ";
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if (code >= kMacOSX_10_2 && code < kMacOSX_10_3)
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{
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systemVersion += "10.2.";
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asprintf(&temp, "%d", code - kMacOSX_10_2);
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systemVersion += temp;
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free(temp);
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}
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else
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{
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systemVersion += "10.3";
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int ssv = code - kMacOSX_10_3;
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if (ssv > 9)
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systemVersion += "+";
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else {
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asprintf(&temp, ".%d", ssv);
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systemVersion += temp;
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free(temp);
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}
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}
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}
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else
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systemVersion = "Unknown system version";
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/* Get memory */
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err = Gestalt(gestaltLogicalRAMSize, &vRam);
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if (err != noErr)
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vRam = 0;
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err = Gestalt(gestaltPhysicalRAMSize, &ram);
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if (err == noErr)
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{
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vRam -= ram;
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if (vRam < 0)
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vRam = 0;
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ram /= 1048576; /* 1048576 = 1024*1024 */
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vRam /= 1048576;
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}
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else
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{
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ram = 0;
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vRam = 0;
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}
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/* XXX update this information for G5s */
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/* Get processor */
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numProcessors = MPProcessorsScheduled();
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err = Gestalt(gestaltNativeCPUtype, &code);
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if (err == noErr)
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{
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switch (code)
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{
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CASE_GESTALT_M(processor, CPU601, "601");
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CASE_GESTALT_M(processor, CPU603, "603");
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CASE_GESTALT_M(processor, CPU603e, "603e");
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CASE_GESTALT_M(processor, CPU603ev, "603ev");
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CASE_GESTALT_M(processor, CPU604, "604");
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CASE_GESTALT_M(processor, CPU604e, "604e");
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CASE_GESTALT_M(processor, CPU604ev, "604ev");
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CASE_GESTALT_M(processor, CPU750, "G3");
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CASE_GESTALT_M(processor, CPUG4, "G4");
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CASE_GESTALT_M(processor, CPUG47450, "G4");
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CASE_GESTALT_M(processor, CPUApollo, "G4 (Apollo)");
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CASE_GESTALT_M(processor, CPU750FX, "G3 (Sahara)");
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default:
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asprintf(&temp, "%d", code);
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processor = temp;
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free(temp);
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}
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}
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else
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processor = "unknown";
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err = Gestalt(gestaltProcClkSpeed, &processorSpeed);
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if (err != noErr)
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processorSpeed = 0;
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/* Get machine */
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err = Gestalt(gestaltMachineType, &code);
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if (err == noErr)
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{
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switch (code)
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{
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/* PowerMacs */
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CASE_GESTALT(machine, PowerMac4400);
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CASE_GESTALT(machine, PowerMac4400_160);
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CASE_GESTALT(machine, PowerMac5200);
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CASE_GESTALT(machine, PowerMac5400);
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CASE_GESTALT(machine, PowerMac5500);
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CASE_GESTALT(machine, PowerMac6100_60);
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CASE_GESTALT(machine, PowerMac6100_66);
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CASE_GESTALT(machine, PowerMac6200);
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CASE_GESTALT(machine, PowerMac6400);
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CASE_GESTALT(machine, PowerMac6500);
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CASE_GESTALT(machine, PowerMac7100_66);
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CASE_GESTALT(machine, PowerMac7100_80);
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CASE_GESTALT(machine, PowerMac7200);
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CASE_GESTALT(machine, PowerMac7300);
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CASE_GESTALT(machine, PowerMac7500);
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CASE_GESTALT(machine, PowerMac8100_80);
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CASE_GESTALT(machine, PowerMac8100_100);
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CASE_GESTALT(machine, PowerMac8100_110);
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CASE_GESTALT(machine, PowerMac8500);
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CASE_GESTALT(machine, PowerMac9500);
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/* upgrade cards */
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CASE_GESTALT(machine, PowerMacLC475);
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CASE_GESTALT(machine, PowerMacLC575);
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CASE_GESTALT(machine, PowerMacQuadra610);
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CASE_GESTALT(machine, PowerMacQuadra630);
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CASE_GESTALT(machine, PowerMacQuadra650);
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CASE_GESTALT(machine, PowerMacQuadra700);
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CASE_GESTALT(machine, PowerMacQuadra800);
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CASE_GESTALT(machine, PowerMacQuadra900);
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CASE_GESTALT(machine, PowerMacQuadra950);
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CASE_GESTALT(machine, PowerMacCentris610);
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CASE_GESTALT(machine, PowerMacCentris650);
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/* PowerBooks */
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CASE_GESTALT(machine, PowerBook1400);
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CASE_GESTALT(machine, PowerBook2400);
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CASE_GESTALT(machine, PowerBook3400);
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CASE_GESTALT(machine, PowerBook500PPCUpgrade);
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CASE_GESTALT(machine, PowerBookG3);
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CASE_GESTALT(machine, PowerBookG3Series);
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CASE_GESTALT(machine, PowerBookG3Series2);
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/* NewWorld */
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CASE_GESTALT(machine, PowerMacNewWorld);
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CASE_GESTALT(machine, PowerMacG3);
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default:
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asprintf(&temp, "%d", code);
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machine = temp;
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free(temp);
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}
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}
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else if (err == gestaltUndefSelectorErr ) {
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machine = "PowerMac";
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machine += processor;
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}
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else
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machine = "unknown machine";
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/* Send all of the information to the log */
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LOG->Info(machine.c_str());
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LOG->Info("Processor: %s (%ld)", processor.c_str(), numProcessors);
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LOG->Info("%s", systemVersion.c_str());
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LOG->Info("Memory: %ld MB total, %ld MB swap", ram, vRam);
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}
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void ArchHooks_darwin::EnterTimeCriticalSection()
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{
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#if 0
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TimeCritMutex->Lock();
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int mib[] = { CTL_HW, HW_BUS_FREQ };
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int miblen = ARRAYSIZE( mib );
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int bus_speed;
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size_t len = sizeof (bus_speed);
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if( sysctl( mib, miblen, &bus_speed, &len, NULL, 0 ) == -1 )
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{
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LOG->Warn( "sysctl(HW_BUS_FREQ): %s", strerror(errno) );
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return;
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}
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mach_msg_type_number_t cnt = THREAD_TIME_CONSTRAINT_POLICY_COUNT;
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boolean_t bDefaults = false;
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thread_policy_get( mach_thread_self(), THREAD_TIME_CONSTRAINT_POLICY, (int*)&g_oldttcpolicy, &cnt, &bDefaults );
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/* We want to monopolize the CPU for a very short period of time. This means that the
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* period doesn't really matter, and we don't want to be preempted. Set the period
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* very high (~1 second), so that if we ever lose the CPU when we shouldn't, we can
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* detect it and log it in ExitTimeCriticalSection(). */
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thread_time_constraint_policy ttcpolicy;
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ttcpolicy.period = bus_speed;
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ttcpolicy.computation = ttcpolicy.constraint = bus_speed/60;
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ttcpolicy.preemptible = 0;
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thread_policy_set( mach_thread_self(), THREAD_TIME_CONSTRAINT_POLICY,
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(int*)&ttcpolicy, THREAD_TIME_CONSTRAINT_POLICY_COUNT );
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g_fStartedTimeCritAt = RageTimer::GetTimeSinceStart();
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#endif
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}
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void ArchHooks_darwin::ExitTimeCriticalSection()
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{
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#if 0
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thread_policy_set( mach_thread_self(), THREAD_TIME_CONSTRAINT_POLICY,
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(int*) &g_oldttcpolicy, THREAD_TIME_CONSTRAINT_POLICY_COUNT );
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TimeCritMutex->Unlock();
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float fTimeCritLen = RageTimer::GetTimeSinceStart() - g_fStartedTimeCritAt;
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if( fTimeCritLen > 0.1f )
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LOG->Warn( "Time-critical section lasted for %f", fTimeCritLen );
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#endif
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}
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static int64_t GetMicrosecondsSinceEpoch()
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{
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struct timeval tv;
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gettimeofday( &tv, NULL );
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return int64_t(tv.tv_sec) * 1000000 + int64_t(tv.tv_usec);
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}
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int64_t ArchHooks::GetMicrosecondsSinceStart( bool bAccurate )
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{
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static int64_t iStartTime = GetMicrosecondsSinceEpoch();
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return GetMicrosecondsSinceEpoch() - iStartTime;
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}
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/*
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* (c) 2003-2004 Steve Checkoway
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* All rights reserved.
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the
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* "Software"), to deal in the Software without restriction, including
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* without limitation the rights to use, copy, modify, merge, publish,
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* distribute, and/or sell copies of the Software, and to permit persons to
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* whom the Software is furnished to do so, provided that the above
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* copyright notice(s) and this permission notice appear in all copies of
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* the Software and that both the above copyright notice(s) and this
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* permission notice appear in supporting documentation.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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* OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT OF
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* THIRD PARTY RIGHTS. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR HOLDERS
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* INCLUDED IN THIS NOTICE BE LIABLE FOR ANY CLAIM, OR ANY SPECIAL INDIRECT
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* OR CONSEQUENTIAL DAMAGES, OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS
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* OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR
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* OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
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* PERFORMANCE OF THIS SOFTWARE.
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*/
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