Andrew Dent
4165acdf83
- To better support git, remove SVN dependant `$Revision$` from file headers. This does *not* remove: the use of `__REV__` macro in `boostr.inc` and `kernel.asm` - Header Copyright notices updated to 2024. - Minimal white space cleanup (trailing spaces automatically removed). - Note: `asmxygen.py` has a *large* amount of whitespace cleanup, due to incorrect line endings. git-svn-id: svn://kolibrios.org@10051 a494cfbc-eb01-0410-851d-a64ba20cac60
905 lines
25 KiB
PHP
905 lines
25 KiB
PHP
;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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;; ;;
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;; Copyright (C) KolibriOS team 2004-2024. All rights reserved. ;;
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;; Distributed under terms of the GNU General Public License. ;;
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;; ;;
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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struct EXCEPT_STACK
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RegEIP dd ?
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ExcCode dd ? ; only exception 12 overflow stack
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OldESP dd ?
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RegCR2 dd ?
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LockAccess dd ?
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ends
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align 4 ;3A08
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build_interrupt_table:
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mov edi, idts
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mov esi, sys_int
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mov ecx, 0x40
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mov eax, (10001110b shl 24) + os_code
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@@:
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movsw ; low word of code-entry
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stosd ; interrupt gate type : os_code selector
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movsw ; high word of code-entry
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loop @b
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movsd ; copy low dword of trap gate for int 0x40
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movsd ; copy high dword of trap gate for int 0x40
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mov ecx, 23
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mov eax, (10001110b shl 24) + os_code
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@@:
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movsw ; low word of code-entry
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stosd ; interrupt gate type : os_code selector
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movsw ; high word of code-entry
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loop @b
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lidt [esi]
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ret
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iglobal
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align 4
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sys_int:
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; exception handlers addresses (for interrupt gate construction)
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dd e0,e1,e2,e3,e4,e5,e6,except_7 ; SEE: core/fpu.inc
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dd e8,e9,e10,e11,e12,e13,page_fault_exc,e15
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dd e16, e17,e18, e19
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times 12 dd unknown_interrupt ;int_20..int_31
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; interrupt handlers addresses (for interrupt gate construction)
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; 0x20+ are IRQ handlers
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dd irq0
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rept 12 irqn:1 \{dd irq_serv.irq_\#irqn\}
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dd irqD
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rept 18 irqn:14 \{dd irq_serv.irq_\#irqn\}
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; int_0x40 gate trap (for directly copied)
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dw i40 and 0xFFFF, os_code, 11101111b shl 8, i40 shr 16
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rept 23 irqn:33 \{dd irq_serv.irq_\#irqn\}
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idtreg: ; data for LIDT instruction (!!! must be immediately below sys_int data)
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dw 2*($-sys_int-4)-1
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dd idts ; 0x8000B100
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dw 0 ; alignment
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msg_fault_sel dd msg_exc_8,msg_exc_u,msg_exc_a,msg_exc_b
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dd msg_exc_c,msg_exc_d,msg_exc_e,msg_exc_u
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dd msg_exc_u,msg_exc_11
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msg_exc_8 db "Double fault", 0
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msg_exc_u db "Undefined Exception", 0
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msg_exc_a db "Invalid TSS", 0
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msg_exc_b db "Segment not present", 0
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msg_exc_c db "Stack fault", 0
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msg_exc_d db "General protection fault", 0
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msg_exc_e db "Page fault", 0
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msg_exc_11 db "Alignment Check", 0
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if lang eq sp
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include 'core/sys32-sp.inc'
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else
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msg_sel_ker db "kernel", 0
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msg_sel_app db "application", 0
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end if
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endg
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macro save_ring3_context {
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pushad
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}
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macro restore_ring3_context {
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popad
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}
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macro exc_wo_code [num] {
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e#num :
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save_ring3_context
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mov bl, num
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jmp exc_c
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} exc_wo_code 0,1,2,3,4,5,6,15,16,19
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macro exc_w_code [num] {
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e#num :
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add esp, 4
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save_ring3_context
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mov bl, num
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jmp exc_c
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} exc_w_code 8,9,10,11,12,13,17,18
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uglobal
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pf_err_code dd ?
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endg
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page_fault_exc: ; foolproof: selectors are clobbered ...
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pop [ss:pf_err_code] ; actually, until the next #PF
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cmp edi, CONTROL_EXCEPTION ; equ 'EXPT'
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jne .no_ctrl_exc
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bt dword [esp], 31
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jc .setret
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test esi, esi
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jl .no_ctrl_exc
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.setret:
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mov [esp], esi
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iret
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.no_ctrl_exc:
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save_ring3_context
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mov bl, 14
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exc_c: ; exceptions (all but 7th - #NM)
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; stack frame when exception/interrupt from ring3 + pushad (i.e right here)
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reg_ss equ esp+0x30
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reg_esp3 equ esp+0x2C
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reg_eflags equ esp+0x28
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reg_cs3 equ esp+0x24
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reg_eip equ esp+0x20
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; this if frame from pushad
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reg_eax equ esp+0x1C
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reg_ecx equ esp+0x18
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reg_edx equ esp+0x14
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reg_ebx equ esp+0x10
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reg_esp0 equ esp+0x0C
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reg_ebp equ esp+0x08
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reg_esi equ esp+0x04
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reg_edi equ esp+0x00
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mov ax, app_data ; exception
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mov ds, ax ; load proper values
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mov es, ax ; to registers
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cld ; clear the direction flag
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movzx ebx, bl
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; redirect to V86 manager? (EFLAGS & 0x20000) != 0?
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test byte[reg_eflags+2], 2
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jnz v86_exc_c
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cmp bl, 14 ; #PF
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jne @f
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call page_fault_handler ; SEE: core/memory.inc
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@@:
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mov esi, [current_slot]
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btr [esi + APPDATA.except_mask], ebx
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jnc @f
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mov eax, [esi + APPDATA.exc_handler]
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test eax, eax
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jnz IRetToUserHook
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@@:
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cli
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mov eax, [esi + APPDATA.debugger_slot]
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test eax, eax
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jnz .debug
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; not debuggee => say error and terminate
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call show_error_parameters ; this function output in edx = current_slot
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sti
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mov [edx + APPDATA.state], TSTATE_TERMINATING
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call wakeup_osloop
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call change_task
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; If we're here, then the main OS thread has crashed before initializing IDLE thread.
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; Or they both have crashed. Anyway, things are hopelessly broken.
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hlt
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jmp $-1
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.debug:
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; we are debugged process, notify debugger and suspend ourself
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; eax=debugger PID
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mov ecx, 1 ; debug_message code=other_exception
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cmp bl, 1 ; #DB
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jne .notify ; notify debugger and suspend ourself
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mov ebx, dr6 ; debug_message data=DR6_image
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xor edx, edx
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mov dr6, edx
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mov edx, dr7
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mov cl, not 8
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.l1:
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shl dl, 2
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jc @f
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and bl, cl
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@@:
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sar cl, 1
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jc .l1
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mov cl, 3 ; debug_message code=debug_exception
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.notify:
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push ebx ; debug_message data
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mov ebx, [current_slot]
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push [ebx + APPDATA.tid] ; PID
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push ecx ; debug_message code ((here: ecx==1/3))
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mov cl, 12 ; debug_message size
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call debugger_notify ;; only ONE using, inline ??? SEE: core/debug.inc
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add esp, 12
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mov edx, [current_slot]
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mov [edx + APPDATA.state], TSTATE_RUN_SUSPENDED
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call change_task ; SEE: core/shed.inc
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restore_ring3_context
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iretd
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IRetToUserHook:
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cmp ebx, 12
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je .ex_stack
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cmp ebx, 14
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jne .nostack
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mov ecx, cr2
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sub ecx, [reg_esp3]
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jg .nostack
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add ecx, 1000h
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jl .nostack
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.ex_stack:
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mov ecx, [esi+APPDATA.exc_reserve_stack]
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test ecx, ecx
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jle .nostack
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xchg edi, eax
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sub ecx, sizeof.EXCEPT_STACK
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push ebx
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push 1
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pop ebx
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.lock:
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lock bts [ecx+EXCEPT_STACK.LockAccess], 0
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jnc .lock1
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call delay_hs_unprotected
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jmp .lock
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.lock1:
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pop ebx
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cmp ebx, 14
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jne .ex12
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btr [esi+APPDATA.except_mask], 12
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jc .ex_stack1
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xchg eax, edi
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jmp .nostack
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.ex_stack1:
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bts [esi+APPDATA.except_mask], ebx
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dec ebx
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dec ebx
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.ex12:
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mov [ecx+EXCEPT_STACK.ExcCode], ebx
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mov eax, ecx
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xchg [reg_esp3], eax
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mov [ecx+EXCEPT_STACK.OldESP], eax
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mov eax, cr2
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mov [ecx+EXCEPT_STACK.RegCR2], eax
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xchg edi, [reg_eip]
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mov [ecx+EXCEPT_STACK.RegEIP], edi
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jmp .end
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.nostack:
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xchg eax, [reg_eip]
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sub dword[reg_esp3], 8
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mov edi, [reg_esp3]
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stosd
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mov [edi], ebx
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.end:
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restore_ring3_context
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; simply return control to interrupted process
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unknown_interrupt:
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iretd
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;-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=
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; bl - error vector
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show_error_parameters:
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cmp bl, 0x06
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jnz .no_ud
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push ebx
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mov ebx, ud_user_message
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mov ebp, notifyapp
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call fs_execute_from_sysdir_param
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pop ebx
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.no_ud:
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mov edx, [current_slot];not scratched below
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if lang eq sp
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DEBUGF 1, "K : Proceso - terminado forzado PID: %x [%s]\n", [edx + APPDATA.tid], [current_slot]
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else
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DEBUGF 1, "K : Process - forced terminate PID: %x [%s]\n", [edx + APPDATA.tid], [current_slot]
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end if
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cmp bl, 0x08
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jb .l0
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cmp bl, 0x11
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jbe .l1
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.l0:
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mov bl, 0x09
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.l1:
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mov eax, [msg_fault_sel+ebx*4 - 0x08*4]
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DEBUGF 1, "K : %s\n", eax
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mov eax, [reg_cs3+4]
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mov edi, msg_sel_app
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mov ebx, [reg_esp3+4]
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cmp eax, app_code
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je @f
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mov edi, msg_sel_ker
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mov ebx, [reg_esp0+4]
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@@:
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DEBUGF 1, "K : EAX : %x EBX : %x ECX : %x\n", [reg_eax+4], [reg_ebx+4], [reg_ecx+4]
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DEBUGF 1, "K : EDX : %x ESI : %x EDI : %x\n", [reg_edx+4], [reg_esi+4], [reg_edi+4]
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DEBUGF 1, "K : EBP : %x EIP : %x ESP : %x\n", [reg_ebp+4], [reg_eip+4], ebx
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DEBUGF 1, "K : Flags : %x CS : %x (%s)\n", [reg_eflags+4], eax, edi
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DEBUGF 1, "K : Stack dump:\n"
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push eax ebx ecx edx
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call .check_ESP
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test eax, eax
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jnz .error_ESP
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DEBUGF 1, "K : [ESP+00]: %x",[ebx]
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add ebx, 4
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call .check_ESP
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test eax, eax
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jnz .error_ESP
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DEBUGF 1, " [ESP+04]: %x",[ebx]
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add ebx, 4
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call .check_ESP
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test eax, eax
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jnz .error_ESP
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DEBUGF 1, " [ESP+08]: %x\n",[ebx]
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add ebx, 4
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call .check_ESP
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test eax, eax
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jnz .error_ESP
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DEBUGF 1, "K : [ESP+12]: %x",[ebx]
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add ebx, 4
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call .check_ESP
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test eax, eax
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jnz .error_ESP
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DEBUGF 1, " [ESP+16]: %x",[ebx]
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add ebx, 4
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call .check_ESP
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test eax, eax
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jnz .error_ESP
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DEBUGF 1, " [ESP+20]: %x\n",[ebx]
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add ebx, 4
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call .check_ESP
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test eax, eax
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jnz .error_ESP
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DEBUGF 1, "K : [ESP+24]: %x",[ebx]
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add ebx, 4
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call .check_ESP
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test eax, eax
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jnz .error_ESP
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DEBUGF 1, " [ESP+28]: %x",[ebx]
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add ebx, 4
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call .check_ESP
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test eax, eax
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jnz .error_ESP
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DEBUGF 1, " [ESP+32]: %x\n",[ebx]
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pop edx ecx ebx eax
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ret
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.error_ESP:
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pop edx ecx ebx eax
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DEBUGF 1, "\n"
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DEBUGF 1, "K : Unexpected end of the stack\n"
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ret
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;--------------------------------------
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.check_ESP:
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push ebx
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shr ebx, 12
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mov ecx, ebx
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shr ecx, 10
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mov edx, [master_tab + ecx*4]
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test edx, PG_READ
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jz .fail ; page table is not created
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; incorrect address in the program
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mov eax, [page_tabs + ebx*4]
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test eax, 2
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jz .fail ; address not reserved for use. error
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pop ebx
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xor eax, eax
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ret
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.fail:
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pop ebx
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xor eax, eax
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dec eax
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ret
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;-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=
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restore reg_ss
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restore reg_esp3
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restore reg_eflags
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restore reg_cs
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restore reg_eip
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restore reg_eax
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restore reg_ecx
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restore reg_edx
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restore reg_ebx
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restore reg_esp0
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restore reg_ebp
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restore reg_esi
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restore reg_edi
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align 4
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lock_application_table:
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push eax ecx edx
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mov ecx, application_table_mutex
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call mutex_lock
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mov eax, [current_slot]
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mov eax, [eax + APPDATA.tid]
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mov [application_table_owner], eax
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pop edx ecx eax
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ret
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align 4
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unlock_application_table:
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push eax ecx edx
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mov [application_table_owner], 0
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mov ecx, application_table_mutex
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call mutex_unlock
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pop edx ecx eax
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ret
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; sysfn 64 implementation
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align 4
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sys_resize_app_memory:
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; in: eax = 64 - function number
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; ebx = 1 - number of its only subfunction
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; ecx = new amount of memory
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; out:
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; eax = 0 - success
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; eax = 1 - out of memory
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; cmp eax,1
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dec ebx
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jnz .no_application_mem_resize
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mov eax, [pg_data.pages_free]
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shl eax, 12
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cmp eax, ecx
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jae @f
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xor eax, eax
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inc eax
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jmp .store_result
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@@:
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stdcall new_mem_resize, ecx
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.store_result:
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mov [esp + SYSCALL_STACK.eax], eax
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.no_application_mem_resize:
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ret
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iglobal
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; process_terminating db 'K : Process - terminating',13,10,0
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; process_terminated db 'K : Process - done',13,10,0
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msg_obj_destroy db 'K : destroy app object',13,10,0
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endg
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; param
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; esi= slot
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align 4
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terminate: ; terminate application
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destroy_thread:
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.slot equ esp+4 ;locals
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.process equ esp ;ptr to parent process
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push esi ;save .slot
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shl esi, BSF sizeof.APPDATA
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mov edx, [SLOT_BASE + esi + APPDATA.process]
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test edx, edx
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jnz @F
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mov [SLOT_BASE + esi + APPDATA.state], TSTATE_FREE
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pop esi
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ret
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@@:
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push edx ;save .process
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lea edx, [SLOT_BASE + esi]
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call scheduler_remove_thread
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call lock_application_table
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; if the process is in V86 mode...
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mov eax, [.slot]
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shl eax, BSF sizeof.APPDATA
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mov esi, [SLOT_BASE + eax + APPDATA.pl0_stack]
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add esi, RING0_STACK_SIZE
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cmp [SLOT_BASE + eax + APPDATA.saved_esp0], esi
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jz .nov86
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; ...it has page directory for V86 mode
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mov esi, [SLOT_BASE + eax + APPDATA.saved_esp0]
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mov ecx, [esi+4]
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mov [SLOT_BASE + eax + APPDATA.process], ecx
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; ...and I/O permission map for V86 mode
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mov ecx, [esi+12]
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mov [SLOT_BASE + eax + APPDATA.io_map], ecx
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mov ecx, [esi+8]
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mov [SLOT_BASE + eax + APPDATA.io_map+4], ecx
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.nov86:
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; destroy per-thread kernel objects
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mov esi, [.slot]
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shl esi, BSF sizeof.APPDATA
|
|
add esi, SLOT_BASE + APP_OBJ_OFFSET
|
|
@@:
|
|
mov eax, [esi + APPOBJ.fd]
|
|
test eax, eax
|
|
jz @F
|
|
|
|
cmp eax, esi
|
|
je @F
|
|
|
|
push esi
|
|
call [eax + APPOBJ.destroy]
|
|
DEBUGF 1,"%s",msg_obj_destroy
|
|
pop esi
|
|
jmp @B
|
|
@@:
|
|
mov esi, [.slot]
|
|
cmp [fpu_owner], esi ; if user fpu last -> fpu user = 2
|
|
jne @F
|
|
|
|
mov [fpu_owner], 2
|
|
mov eax, [SLOT_BASE + sizeof.APPDATA*2 + APPDATA.fpu_state]
|
|
clts
|
|
bt [cpu_caps], CAPS_SSE
|
|
jnc .no_SSE
|
|
fxrstor [eax]
|
|
jmp @F
|
|
.no_SSE:
|
|
fnclex
|
|
frstor [eax]
|
|
@@:
|
|
|
|
mov [KEY_COUNT], byte 0 ; empty keyboard buffer
|
|
mov [BTN_COUNT], byte 0 ; empty button buffer
|
|
|
|
|
|
; remove defined hotkeys
|
|
mov eax, hotkey_list
|
|
.loop:
|
|
cmp [eax+8], esi
|
|
jnz .cont
|
|
mov ecx, [eax]
|
|
jecxz @f
|
|
push dword [eax+12]
|
|
pop dword [ecx+12]
|
|
@@:
|
|
mov ecx, [eax+12]
|
|
push dword [eax]
|
|
pop dword [ecx]
|
|
xor ecx, ecx
|
|
mov [eax], ecx
|
|
mov [eax+4], ecx
|
|
mov [eax+8], ecx
|
|
mov [eax+12], ecx
|
|
.cont:
|
|
add eax, 16
|
|
cmp eax, hotkey_list+256*16
|
|
jb .loop
|
|
; get process PID
|
|
mov eax, esi
|
|
shl eax, BSF sizeof.APPDATA
|
|
mov eax, [eax + SLOT_BASE + APPDATA.tid]
|
|
; compare current lock input with process PID
|
|
cmp eax, [PID_lock_input]
|
|
jne @f
|
|
|
|
xor eax, eax
|
|
mov [PID_lock_input], eax
|
|
@@:
|
|
; remove hotkeys in buffer
|
|
mov eax, hotkey_buffer
|
|
.loop2:
|
|
cmp [eax], esi
|
|
jnz .cont2
|
|
and dword [eax+4], 0
|
|
and dword [eax], 0
|
|
.cont2:
|
|
add eax, 8
|
|
cmp eax, hotkey_buffer+120*8
|
|
jb .loop2
|
|
|
|
mov ecx, esi ; remove buttons
|
|
.bnewba2:
|
|
mov edi, [BTN_ADDR]
|
|
mov eax, edi
|
|
cld
|
|
movzx ebx, word [edi]
|
|
inc bx
|
|
.bnewba:
|
|
dec bx
|
|
jz .bnmba
|
|
add eax, 0x10
|
|
cmp cx, [eax]
|
|
jnz .bnewba
|
|
pusha
|
|
mov ecx, ebx
|
|
inc ecx
|
|
shl ecx, 4
|
|
mov ebx, eax
|
|
add eax, 0x10
|
|
call memmove
|
|
dec dword [edi]
|
|
popa
|
|
jmp .bnewba2
|
|
.bnmba:
|
|
|
|
pusha ; save window coordinates for window restoring
|
|
cld
|
|
shl esi, BSF sizeof.WDATA
|
|
add esi, window_data
|
|
mov eax, [esi + WDATA.box.left]
|
|
mov [draw_limits.left], eax
|
|
add eax, [esi + WDATA.box.width]
|
|
mov [draw_limits.right], eax
|
|
mov eax, [esi + WDATA.box.top]
|
|
mov [draw_limits.top], eax
|
|
add eax, [esi + WDATA.box.height]
|
|
mov [draw_limits.bottom], eax
|
|
|
|
xor eax, eax
|
|
mov edi, esi
|
|
mov ecx, sizeof.WDATA/4
|
|
rep stosd
|
|
popa
|
|
|
|
; debuggee test
|
|
pushad
|
|
mov edi, esi
|
|
shl edi, BSF sizeof.APPDATA
|
|
mov eax, [SLOT_BASE + edi + APPDATA.debugger_slot]
|
|
test eax, eax
|
|
jz .nodebug
|
|
movi ecx, 8
|
|
push dword [SLOT_BASE + edi + APPDATA.tid]; PID
|
|
push 2
|
|
call debugger_notify
|
|
pop ecx
|
|
pop ecx
|
|
.nodebug:
|
|
popad
|
|
|
|
mov ebx, [.slot]
|
|
shl ebx, BSF sizeof.APPDATA
|
|
push ebx
|
|
mov ebx, [SLOT_BASE + ebx + APPDATA.pl0_stack]
|
|
|
|
stdcall kernel_free, ebx
|
|
|
|
pop ebx
|
|
mov ebx, [SLOT_BASE + ebx + APPDATA.cur_dir]
|
|
stdcall kernel_free, ebx
|
|
|
|
mov edi, [.slot]
|
|
shl edi, BSF sizeof.APPDATA
|
|
add edi, SLOT_BASE
|
|
|
|
mov eax, [edi + APPDATA.io_map]
|
|
cmp eax, [SLOT_BASE + sizeof.APPDATA+APPDATA.io_map]
|
|
je @F
|
|
call free_page
|
|
@@:
|
|
mov eax, [edi+APPDATA.io_map+4]
|
|
cmp eax, [SLOT_BASE+sizeof.APPDATA+APPDATA.io_map+4]
|
|
je @F
|
|
call free_page
|
|
@@:
|
|
lea ebx, [edi + APPDATA.list]
|
|
list_del ebx ;destroys edx, ecx
|
|
|
|
; activate window
|
|
movzx eax, word [WIN_STACK + esi*2]
|
|
cmp eax, [thread_count]
|
|
jne .dont_activate
|
|
pushad
|
|
.check_next_window:
|
|
dec eax
|
|
cmp eax, 1
|
|
jbe .nothing_to_activate
|
|
lea esi, [WIN_POS + eax*2]
|
|
movzx edi, word [esi] ; edi = process
|
|
shl edi, BSF sizeof.APPDATA
|
|
cmp [SLOT_BASE + edi + APPDATA.state], TSTATE_FREE ; skip free slots
|
|
je .check_next_window
|
|
shr edi, (BSF sizeof.APPDATA - BSF sizeof.WDATA)
|
|
add edi, window_data
|
|
; \begin{diamond}[19.09.2006]
|
|
; skip minimized windows
|
|
test [edi + WDATA.fl_wstate], WSTATE_MINIMIZED
|
|
jnz .check_next_window
|
|
; \end{diamond}
|
|
call waredraw
|
|
.nothing_to_activate:
|
|
popad
|
|
.dont_activate:
|
|
|
|
push esi ; remove hd1 & cd & flp reservation
|
|
shl esi, BSF sizeof.APPDATA
|
|
mov esi, [SLOT_BASE + esi + APPDATA.tid]
|
|
cmp [cd_status], esi
|
|
jnz @f
|
|
call free_cd_channel
|
|
and [cd_status], 0
|
|
@@:
|
|
pop esi
|
|
cmp [bgrlockpid], esi
|
|
jnz @f
|
|
and [bgrlockpid], 0
|
|
and [bgrlock], 0
|
|
@@:
|
|
|
|
pusha ; remove all port reservations
|
|
mov edx, esi
|
|
shl edx, BSF sizeof.APPDATA
|
|
mov edx, [SLOT_BASE + edx + APPDATA.tid]
|
|
|
|
.rmpr0:
|
|
mov esi, [RESERVED_PORTS]
|
|
|
|
test esi, esi
|
|
jz .rmpr9
|
|
|
|
.rmpr3:
|
|
|
|
mov edi, esi
|
|
shl edi, 4
|
|
add edi, RESERVED_PORTS
|
|
|
|
cmp edx, [edi]
|
|
je .rmpr4
|
|
|
|
dec esi
|
|
jnz .rmpr3
|
|
|
|
jmp .rmpr9
|
|
|
|
.rmpr4:
|
|
|
|
mov ecx, 256
|
|
sub ecx, esi
|
|
shl ecx, 4
|
|
|
|
mov esi, edi
|
|
add esi, 16
|
|
cld
|
|
rep movsb
|
|
|
|
dec dword [RESERVED_PORTS]
|
|
|
|
jmp .rmpr0
|
|
|
|
.rmpr9:
|
|
popa
|
|
|
|
; clearing APPDATA structure this thread
|
|
pushad
|
|
mov edi, esi
|
|
shl edi, BSF sizeof.APPDATA
|
|
add edi, SLOT_BASE
|
|
mov eax, 0x20202020
|
|
stosd
|
|
stosd
|
|
stosd
|
|
mov ecx, 244/4
|
|
xor eax, eax
|
|
rep stosd
|
|
popad
|
|
|
|
mov edi, esi ; do not run this process slot
|
|
shl edi, BSF sizeof.APPDATA
|
|
mov [SLOT_BASE + edi + APPDATA.state], TSTATE_FREE
|
|
; debugger test - terminate all debuggees
|
|
mov eax, 2
|
|
mov ecx, SLOT_BASE + 2*sizeof.APPDATA + APPDATA.debugger_slot
|
|
.xd0:
|
|
cmp eax, [thread_count]
|
|
ja .xd1
|
|
cmp dword [ecx], esi
|
|
jnz @f
|
|
and dword [ecx], 0
|
|
pushad
|
|
xchg eax, ecx
|
|
mov ebx, 2
|
|
call sys_system
|
|
popad
|
|
@@:
|
|
inc eax
|
|
add ecx, sizeof.APPDATA
|
|
jmp .xd0
|
|
.xd1:
|
|
;release slot
|
|
|
|
bts [thr_slot_map], esi
|
|
|
|
mov ecx, [.process]
|
|
lea eax, [ecx + PROC.thr_list]
|
|
cmp eax, [eax + LHEAD.next]
|
|
jne @F
|
|
|
|
call destroy_process.internal
|
|
@@:
|
|
sti ; .. and life goes on
|
|
|
|
mov eax, [draw_limits.left]
|
|
mov ebx, [draw_limits.top]
|
|
mov ecx, [draw_limits.right]
|
|
mov edx, [draw_limits.bottom]
|
|
call calculatescreen
|
|
xor eax, eax
|
|
xor esi, esi
|
|
call redrawscreen
|
|
|
|
call unlock_application_table
|
|
;mov esi,process_terminated
|
|
;call sys_msg_board_str
|
|
add esp, 8
|
|
ret
|
|
restore .slot
|
|
restore .process
|
|
|
|
; Three following procedures are used to guarantee that
|
|
; some part of kernel code will not be terminated from outside
|
|
; while it is running.
|
|
; Note: they do not protect a thread from terminating due to errors inside
|
|
; the thread; accessing a nonexisting memory would still terminate it.
|
|
|
|
; First two procedures must be used in pair by thread-to-be-protected
|
|
; to signal the beginning and the end of an important part.
|
|
; It is OK to have nested areas.
|
|
|
|
; The last procedure must be used by outside wanna-be-terminators;
|
|
; if it is safe to terminate the given thread immediately, it returns eax=1;
|
|
; otherwise, it returns eax=0 and notifies the target thread that it should
|
|
; terminate itself when leaving a critical area (the last critical area if
|
|
; they are nested).
|
|
|
|
; Implementation. Those procedures use one dword in APPDATA for the thread,
|
|
; APPDATA.terminate_protection.
|
|
; * The upper bit is 1 during normal operations and 0 when terminate is requested.
|
|
; * Other bits form a number = depth of critical regions,
|
|
; plus 1 if the upper bit is 1.
|
|
; * When this dword goes to zero, the thread should be destructed,
|
|
; and the procedure in which it happened becomes responsible for destruction.
|
|
|
|
; Enter critical area. Called by thread which wants to be protected.
|
|
proc protect_from_terminate
|
|
mov edx, [current_slot]
|
|
; Atomically increment depth of critical areas and get the old value.
|
|
mov eax, 1
|
|
lock xadd [edx + APPDATA.terminate_protection], eax
|
|
; If the old value was zero, somebody has started to terminate us,
|
|
; so we are destructing and cannot do anything protected.
|
|
; Otherwise, return to the caller.
|
|
test eax, eax
|
|
jz @f
|
|
ret
|
|
@@:
|
|
; Wait for somebody to finish us.
|
|
call change_task
|
|
jmp @b
|
|
endp
|
|
|
|
; Leave critical area. Called by thread which wants to be protected.
|
|
proc unprotect_from_terminate
|
|
mov edx, [current_slot]
|
|
; Atomically decrement depth of critical areas.
|
|
lock dec [edx + APPDATA.terminate_protection]
|
|
; If the result of decrement is zero, somebody has requested termination,
|
|
; but at that moment we were inside a critical area; terminate now.
|
|
jz sys_end
|
|
; Otherwise, return to the caller.
|
|
ret
|
|
endp
|
|
|
|
; Request termination of thread identified by edx = SLOT_BASE + slot*sizeof.APPDATA.
|
|
; Called by anyone.
|
|
proc request_terminate
|
|
xor eax, eax ; set return value
|
|
; Atomically clear the upper bit. If it was already zero, then
|
|
; somebody has requested termination before us, so just exit.
|
|
lock btr [edx + APPDATA.terminate_protection], 31
|
|
jnc .unsafe
|
|
; Atomically decrement depth of critical areas.
|
|
lock dec [edx + APPDATA.terminate_protection]
|
|
; If the result of decrement is nonzero, the target thread is inside a
|
|
; critical area; leave termination to leaving that area.
|
|
jnz .unsafe
|
|
; Otherwise, it is safe to kill the target now and the caller is responsible
|
|
; for this. Return eax=1.
|
|
inc eax
|
|
.unsafe:
|
|
ret
|
|
endp
|
|
|