390 lines
9.7 KiB
HolyC
Executable File
390 lines
9.7 KiB
HolyC
Executable File
asm {
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ALIGN 16,OC_NOP
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USE16
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//See $LK,"TempleOS MultiCore",A="FI:::/Doc/MultiCore.DD"$.
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//This code gets copied to $LK,"MP_VECT_ADDR",A="MN:MP_VECT_ADDR"$.
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//See $LK,"MemCpy(MP_VECT_ADDR",A="FF:::/Kernel/MultiProc.HC,MemCpy(mp:2"$.
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COREAP_16BIT_INIT::
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JMP @@05
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ALIGN 4,OC_NOP
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AP_GDT_PTR: DU16 sizeof(CGDT)-1;
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DU64 0;
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@@05: CLI
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WBINVD
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MOV AX,MP_VECT_ADDR/16
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MOV DS,AX
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LGDT U32 [CAP16BitInit.ap_gdt_ptr] //See $LK,"mp->ap_gdt_ptr",A="FF:::/Kernel/MultiProc.HC,mp->ap_gdt_ptr:2"$
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MOV EAX,SYS_START_CR0
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MOV_CR0_EAX
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DU8 0x66,0xEA; //JMP CGDT.cs32:AP_32BIT_INIT
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DU32 AP_32BIT_INIT;
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DU16 CGDT.cs32;
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COREAP_16BIT_INIT_END::
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USE32
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AP_32BIT_INIT:
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MOV AX,CGDT.ds
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MOV DS,AX
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MOV ES,AX
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MOV FS,AX
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MOV GS,AX
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MOV SS,AX
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@@05: LOCK
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BTS U32 [SYS_MP_CNT_LOCK],0
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JC @@05
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MOV ESI,U32 [SYS_MP_CNT_INITIAL]
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LOCK
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INC U32 [SYS_MP_CNT_INITIAL]
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LOCK
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BTR U32 [SYS_MP_CNT_LOCK],0
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CMP ESI,MP_PROCESSORS_NUM
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JAE I32 _SYS_HLT
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IMUL2 ESI,sizeof(CCPU)
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ADD ESI,U32 [SYS_CPU_STRUCTS]
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LEA ESP,U32 CCPU.start_stk+sizeof(CCPU.start_stk)[ESI]
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PUSH U32 RFLAGG_START
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POPFD
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PUSH U32 0 //Return from next call will be 64-bit
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CALL SYS_ENTER_LONG_MODE
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USE64
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FNINIT
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MOV RAX,RSI
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CALL SET_GS_BASE
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@@10: MOV RAX,U64 CCPU.seth_task[RSI]
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TEST RAX,RAX
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JZ @@10
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MOV U64 CTask.gs[RAX],RSI
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CALL SET_FS_BASE
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JMP I32 _TASK_CONTEXT_RESTORE
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}
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U0 TSSBusy(I64 tr,Bool val=OFF)
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{//See $LK,"::/Demo/Lectures/Ring3.HC"$.
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LBEqu((&sys_gdt)(U8 *)+tr+4,9,val);
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}
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CTSS *TSSNew(I64 cpu_num)
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{
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U32 *d,*d1;
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CTSS *tss=CAlloc(sizeof(CTSS));
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tss->io_map_offset=offset(CTSS.io_map);
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MemSet(tss->io_map,0xFF,0x10000/8);
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tss->st0=MAlloc(MEM_INTERRUPT_STK);
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tss->rsp0=tss->st0(U8 *)+MSize(tss->st0);
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tss->st1=MAlloc(MEM_INTERRUPT_STK);
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tss->rsp1=tss->st1(U8 *)+MSize(tss->st1);
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tss->st2=MAlloc(MEM_INTERRUPT_STK);
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tss->rsp2=tss->st2(U8 *)+MSize(tss->st2);
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tss->tr =offset(CGDT.tr)+cpu_num*16;
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tss->tr_ring3=offset(CGDT.tr_ring3)+cpu_num*16;
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d=(&sys_gdt)(U8 *)+tss->tr;
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d1=d(U8 *)+4;
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*d =0x0000FFFF;
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*d1=0x008F8900;
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d(U8 *)+=2;
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*d|=tss & 0x00FFFFFF;
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*d1++|=tss & 0xFF000000;
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*d1++=tss>>32;
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*d1=0;
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d=(&sys_gdt)(U8 *)+tss->tr_ring3;
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d1=d(U8 *)+4;
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*d =0x0000FFFF;
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*d1=0x008FE900;
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d(U8 *)+=2;
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*d|=tss & 0x00FFFFFF;
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*d1++|=tss & 0xFF000000;
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*d1++=tss>>32;
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*d1=0;
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return tss;
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}
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CCPU *CPUStructInit(I64 num,CCPU *c,CTask *seth_task)
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{//Seth is null when called by adam on CSysFixedArea.boot_cpu0
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MemSet(c,0,sizeof(CCPU));
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c->addr=c;
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c->num=num;
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c->idle_factor=0.01;
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QueInit(&c->next_dying);
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if (Bt(&sys_run_level,RLf_16MEG_ADAM_HEAP_CTRL)) {
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c->idle_task=Spawn(0,NULL,"Idle Task",,Fs,,0);
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LBts(&c->idle_task->task_flags,TASKf_IDLE);
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c->tss=TSSNew(num);
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}
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c->seth_task=seth_task;// It waits for this to be filled-in: $LK,"seth_task",A="FF:::/Kernel/MultiProc.HC,seth_task"$
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return c;
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}
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U0 MPInt(U8 num,I64 cpu_num=1)
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{//Generate interrupt for specified core.
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if (cpu_num>=mp_cnt) {
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if (!Bt(&sys_run_level,RLf_MP))
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return;
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else
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throw('MultCore');
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}
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PUSHFD
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CLI //Multitasking safe because each core has a local apic and IRQ's are off
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while (*(dev.uncached_alias+LAPIC_ICR_LOW)(U32 *)&0x1000)
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PAUSE
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*(dev.uncached_alias+LAPIC_ICR_HIGH)(U32 *)=dev.mp_apic_ids[cpu_num]<<24;
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*(dev.uncached_alias+LAPIC_ICR_LOW)(U32 *)=0x4000+num;
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POPFD
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}
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U0 MPIntAll(U8 num)
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{//Generate interrupt for all but own core.
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PUSHFD
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CLI //Multitasking safe because each core has a local apic and IRQ's are off
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while (*(dev.uncached_alias+LAPIC_ICR_LOW)(U32 *)&0x1000)
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PAUSE
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*(dev.uncached_alias+LAPIC_ICR_LOW)(U32 *)=0xC4800+num;
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POPFD
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}
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U0 MPNMInt()
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{//Generate nonmaskable interrupt.
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*(dev.uncached_alias+LAPIC_ICR_LOW)(U32 *)=0xC4400;
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}
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U0 MPHalt()
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{//Halt all other cores.
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mp_cnt=1;
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MPNMInt;
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Busy(10000);
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}
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U0 MPAPICInit()
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{//Called by adam during start-up
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//and other cores during initialization
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//after $LK,"Core0StartMP",A="MN:Core0StartMP"$().
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*(dev.uncached_alias+LAPIC_SVR)(U32 *)|=LAPICF_APIC_ENABLED;
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dev.mp_apic_ids[Gs->num]=*(dev.uncached_alias+LAPIC_APIC_ID)(U32 *)>>24;
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*(dev.uncached_alias+LAPIC_LDR)(U32 *)=dev.mp_apic_ids[Gs->num]<<24;
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*(dev.uncached_alias+LAPIC_DFR)(U32 *)=0xF0000000;
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// MemSet(dev.uncached_alias+LAPIC_IRR,0,0x20);
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// MemSet(dev.uncached_alias+LAPIC_ISR,0,0x20);
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// MemSet(dev.uncached_alias+LAPIC_TMR,0,0x20);
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SetRAX(Gs->tss->tr);
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LTR AX
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if (Gs->num) {
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IntInit1;
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SetRFlags(RFLAGG_NORMAL);
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}
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}
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#assert !offset(CJobCtrl.next_waiting)
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U0 CoreAPSethTask()
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{
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CJobCtrl *ctrl=&Fs->srv_ctrl;
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while (TRUE) {
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STI
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do {
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TaskKillDying;
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do PAUSE
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while (LBts(&ctrl->flags,JOBCf_LOCKED));
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} while (ctrl->next_waiting!=ctrl && JobRunOne(GetRFlags,ctrl));
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CLI
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LBts(&Fs->task_flags,TASKf_AWAITING_MSG);
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LBtr(&ctrl->flags,JOBCf_LOCKED);
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LBts(&Fs->task_flags,TASKf_IDLE);
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Yield;
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LBtr(&Fs->task_flags,TASKf_IDLE);
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}
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}
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CJob *JobQue(I64 (*fp_addr)(U8 *data),U8 *data=NULL,
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I64 target_cpu=1,I64 flags=1<<JOBf_FREE_ON_COMPLETE,
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I64 job_code=JOBT_CALL,U8 *aux_str=NULL,I64 aux1=0,I64 aux2=0)
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{//Queue multicore jobs, handled by Seth tasks.
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//Set flags to zero if you wish to get the res.
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//See $LK,"::/Demo/MultiCore/Lock.HC"$
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CJobCtrl *ctrl;
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CJob *tmpc;
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CTask *seth;
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if (!(0<=target_cpu<mp_cnt))
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throw('MultCore');
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tmpc=ACAlloc(sizeof(CJob));
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if (aux_str)
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tmpc->aux_str=AStrNew(aux_str);
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tmpc->job_code=job_code;
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tmpc->addr=fp_addr;
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tmpc->fun_arg=data;
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tmpc->flags=flags;
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tmpc->aux1=aux1;
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tmpc->aux2=aux2;
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seth=cpu_structs[target_cpu].seth_task;
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tmpc->ctrl=ctrl=&seth->srv_ctrl;
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PUSHFD
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CLI
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while (LBts(&ctrl->flags,JOBCf_LOCKED))
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Yield;
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if (ctrl->next_waiting==ctrl && LBtr(&seth->task_flags,TASKf_AWAITING_MSG))
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MPInt(I_WAKE,target_cpu);
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QueIns(tmpc,ctrl->last_waiting);
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LBtr(&ctrl->flags,JOBCf_LOCKED);
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POPFD
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return tmpc;
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}
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CTask *SpawnQue(U0 (*fp_addr)(U8 *data),U8 *data=NULL,U8 *task_name=NULL,
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I64 target_cpu, CTask *parent=NULL, //NULL means adam
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I64 stk_size=0,I64 flags=1<<JOBf_ADD_TO_QUE)
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{
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CTask *res;
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CJob *tmpc=JobQue(fp_addr,data,target_cpu,
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flags,JOBT_SPAWN_TASK,task_name,parent,stk_size);
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CJobCtrl *ctrl;
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while (!Bt(&tmpc->flags,JOBf_DONE)) {
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LBts(&Fs->task_flags,TASKf_IDLE);
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Yield;
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}
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LBtr(&Fs->task_flags,TASKf_IDLE);
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res=tmpc->spawned_task;
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ctrl=tmpc->ctrl;
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PUSHFD
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CLI
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while (LBts(&ctrl->flags,JOBCf_LOCKED))
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Yield;
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QueRem(tmpc);
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LBtr(&ctrl->flags,JOBCf_LOCKED);
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POPFD
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JobDel(tmpc);
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return res;
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}
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U0 CoreAPSethInit()
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{//Called by multicore's seth task after $LK,"Core0StartMP",A="MN:Core0StartMP"$()
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//as the first thing a CPU does before waiting for jobs.
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MPAPICInit;
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Fs->rip=&CoreAPSethTask;
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TaskContextRestore;
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}
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U0 Core0StartMP()
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{//Called by adam during $LK,"start-up",A="FF:::/Kernel/KMain.HC,Core0StartMP"$.
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CTask *task;
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U8 buf[STR_LEN];
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CAP16BitInit *mp=MP_VECT_ADDR;
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CCPU *c;
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I64 i,my_mp_cnt;
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CRAXRBCRCXRDX ee;
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CPUId(0x1,&ee);
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if (!Bt(&ee.rdx,9))
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return;
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PUSHFD
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CLI
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if (mp_cnt>1) {
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my_mp_cnt=mp_cnt;
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MPHalt; //sets mp_cnt to 1
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for (i=1;i<my_mp_cnt;i++) {
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c=&cpu_structs[i];
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JobQueDel(&c->seth_task->srv_ctrl.next_waiting);
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JobQueDel(&c->seth_task->srv_ctrl.next_done);
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}
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}
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MemSet(&cpu_structs[1],0,sizeof(CCPU)*(MP_PROCESSORS_NUM-1));
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//When you start-up other cores, they jump to an addr
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//specified by a byte vect number, $LK,"MPN_VECT",A="MN:MPN_VECT"$ which corresponds
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//to a location 4096*vect number, $LK,"MP_VECT_ADDR",A="MN:MP_VECT_ADDR"$$WW,0$.
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MemCpy(mp,COREAP_16BIT_INIT,COREAP_16BIT_INIT_END-COREAP_16BIT_INIT);
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MemCpy(&mp->ap_gdt_ptr,SYS_GDT_PTR,sizeof(CSysLimitBase));
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mp_cnt_initial=mp_cnt=1;
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mp_cnt_lock=0;
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*(dev.uncached_alias+LAPIC_LVT_ERR)(U32 *)=
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*(dev.uncached_alias+LAPIC_LVT_ERR)(U32 *)&0xFFFFFF00+MPN_VECT;
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WBINVD //Not sure why this is needed. Might just need delay. $LK,"MemCpy",A="MN:MemCpy"$ above?
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*(dev.uncached_alias+LAPIC_ICR_LOW)(U32 *)=0xC4500; //assert init IPI
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Busy(10000);
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*(dev.uncached_alias+LAPIC_ICR_LOW)(U32 *)=0xC4600+MPN_VECT; //start-up
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Busy(200);
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*(dev.uncached_alias+LAPIC_ICR_LOW)(U32 *)=0xC4600+MPN_VECT;
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Busy(100000);
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for (i=0;i<10000;i++)
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LBts(&mp_cnt_lock,0); //Don't let more through
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my_mp_cnt=mp_cnt_initial;
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if (my_mp_cnt>MP_PROCESSORS_NUM)
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my_mp_cnt=MP_PROCESSORS_NUM;
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for (i=1;i<my_mp_cnt;i++) {
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StrPrint(buf,"Seth Task CPU%02X",i);
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task=Spawn(&CoreAPSethInit,NULL,buf,,,MEM_SETH_STK,0);
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task->rflags=RFLAGG_START;
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//$LK,"CTask",A="MN:CTask"$ alloced off this core's seth_task's heap (Which is Adam)
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CPUStructInit(i,&cpu_structs[i],task);
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WBINVD //Not sure why this is needed. Might just need delay.
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}
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//Make sure they're all up-and-running
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for (i=1;i<my_mp_cnt;i++)
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while (!Bt(&cpu_structs[i].seth_task->task_flags,TASKf_AWAITING_MSG))
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PAUSE;
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POPFD
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mp_cnt=my_mp_cnt; //Finalize cnt
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}
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U0 Core0Init()
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{//Called by adam during start-up
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CRAXRBCRCXRDX ee;
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CPUId(0x1,&ee);
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mp_cnt_initial=mp_cnt=1;
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mp_cnt_lock=0;
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dbg.mp_crash=ACAlloc(sizeof(CMPCrash));
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//Must be in code heap because init code uses 32 bit addr of cpu_struct
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adam_task->gs=cpu_structs=
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CAlloc(sizeof(CCPU)*MP_PROCESSORS_NUM,Fs->code_heap);
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CPUStructInit(0,cpu_structs,adam_task);
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asm {//RAX has GS
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IMPORT SET_GS_BASE;
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CALL SET_GS_BASE
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}
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if (Bt(&ee.rdx,9)) {
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//Unnecessary?
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// SetMSR(IA32_LAPIC_BASE,dev.uncached_alias+LAPIC_BASE+0x900);
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MPAPICInit;
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}
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}
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interrupt U0 IntMPCrash()
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{//Entering the debugger from another core causes an interrupt on Core0
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//Which calls this routine.
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*(dev.uncached_alias+LAPIC_EOI)(U32 *)=0;
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mp_cnt=1;
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Raw(ON);
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text.raw_flags|=RWF_SHOW_DOLLAR;
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"MP Crash CPU%02X Task:%08X\n"
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"RIP:%P\n",dbg.mp_crash->cpu_num,dbg.mp_crash->task,dbg.mp_crash->rip;
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Panic(dbg.mp_crash->msg,dbg.mp_crash->msg_num);
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}
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