250 lines
5.2 KiB
NASM
250 lines
5.2 KiB
NASM
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; Arguments:
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; ah Bus Number (0 .. 255)
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; al Device Number (0 .. 31)
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;
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; Returns:
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; - true/false (eax)
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pci_device_exists:
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push dword esi
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sub esp, 8
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mov esi, esp
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mov [esi], edx
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mov [esi + 4], eax
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.make_address:
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xor eax, eax
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; Enable Bit
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or al, 1
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; Make space for 8 Reserved Bits and 8 Bytes of bus number.
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shl eax, 15
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; Bus Number
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mov al, [esi + 5]
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; Device Number
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shl eax, 5 ; Make space for device number
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mov dl, [esi + 4]
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and dl, 0x1f
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or al, dl
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shl eax, 11
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.io_task:
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mov dx, PCI_CONFIG_ADDRESS_PORT
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out dx, eax
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mov dx, PCI_CONFIG_DATA_PORT
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in eax, dx
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cmp ax, 0xffff
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jne .device_found
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.not_a_device:
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mov edx, [esi]
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add esp, 8
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pop dword esi
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xor eax, eax
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ret
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.device_found:
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mov edx, [esi]
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add esp, 8
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pop dword esi
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mov eax, 1
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ret
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; Arguments:
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; [FURTHEST FROM EBP]
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; 3. U32 PCI Device Class & Subclass
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; (Higher byte: Class, lower byte: Subclass)
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; 2. U32 PCI Device Address
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; 1. Ptr32 Pointer to PCI driver area of 65536 bytes
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; [NEAREST TO EBP]
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pci_append_device:
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push dword esi
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sub esp, 64
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mov esi, esp
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mov [esi + (64 - 4)], eax
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mov [esi + (64 - 8)], ebx
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mov [esi + (64 - 12)], ecx
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mov [esi + (64 - 20)], edi
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.get_device_count:
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mov ebx, [ebp - 4]
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xor ecx, ecx
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mov cx, [ebx + PCI_DEVICE_COUNT_OFFSET]
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mov [esi + 4], cx
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.calculate_device_offset:
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; Every device slot has 16 bytes, multiply index with 16
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shl cx, 4
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; Point into driver device area (add device area start on top)
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add ecx, ebx
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add ecx, PCI_DEVICE_COUNT_OFFSET
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mov ebx, ecx
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.set_device:
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mov ecx, [ebp - 8]
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mov [ebx], ecx
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mov ecx, [ebp - 12]
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mov [ebx + 4], ecx
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increment_device_count:
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.epilog:
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mov eax, [esi + (64 - 4)]
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mov ebx, [esi + (64 - 8)]
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mov ecx, [esi + (64 - 12)]
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mov edi, [esi + (64 - 20)]
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add esp, 64
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pop dword esi
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ret
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; Arguments:
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; [FURTHER FROM EBP]
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; 2. U32 Bus Number (0 .. 255)
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; 1. Ptr32 Pointer to PCI driver area of 65536 bytes
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; [NEAREST TO EBP]
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;
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; Returns:
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; - Number of devics on the bus (eax)
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pci_enumerate_bus:
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push dword esi
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sub esp, 64
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mov esi, esp
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mov [esi + (64 - 8)], ebx
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mov [esi + (64 - 12)], ecx
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mov [esi + (64 - 20)], edi
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; [esi]: Device-in-bus Index
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; [esi + 4]: Number of existing devices
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; [esi + 8]: Bus number
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mov [esi], dword 0
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mov [esi + 4], dword 0
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mov eax, [ebp - 8]
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mov [esi + 8], eax
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.initialize_device_loop:
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.device_loop:
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cmp [esi], dword 32
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jae .epilog
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.test_whether_device_exists:
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push ebp
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mov ebp, esp
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mov ah, [esi + 8] ; Bus Number
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mov al, [esi] ; Device Number
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call pci_device_exists
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mov esp, ebp
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pop ebp
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cmp ax, 0
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je .no_device
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.call_append_device:
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push ebp
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mov ebp, esp
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push dword [esi + 8]
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push dword 0xcafebabe
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push dword 0xdeadbeef
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call pci_append_device
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mov esp, ebp
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pop ebp
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mov eax, [esi + 4]
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inc eax
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mov [esi + 4], eax
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.no_device:
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mov ecx, [esi]
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inc ecx
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mov [esi], ecx
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jmp .device_loop
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.epilog:
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mov ebx, [esi + (64 - 8)]
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mov ecx, [esi + (64 - 12)]
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mov edi, [esi + (64 - 20)]
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mov eax, [esi + 4]
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add esp, 64
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pop dword esi
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ret
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; Arguments:
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; [FURTHEST FROM EBP]
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; 2. U32 Maximum number of devices to enumerate
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; (0 to eliminate limit)
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; 1. Ptr32 Pointer to PCI driver area of 65536 bytes
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; [NEAREST TO EBP]
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pci_enumerate:
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push dword esi
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sub esp, 64
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mov esi, esp
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mov [esi + (64 - 4)], eax
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mov [esi + (64 - 8)], ebx
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mov [esi + (64 - 12)], ecx
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mov [esi + (64 - 16)], edx
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mov [esi + (64 - 20)], edi
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; [esi]: Number of devices found
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; ecx: Bus Index
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mov edx, [ebp - 4]
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mov [esi + 4], edx
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.bus_loop:
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xor ecx, ecx
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mov [esi], dword 0
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.bus_loop_body:
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; Test whether the device count is unlimited,
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; ignore the device count check if it is.
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cmp [ebp - 8], dword 0
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je .call_bus_enumerator
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mov edx, [esi]
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cmp edx, [ebp - 8]
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jae .epilog
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.call_bus_enumerator:
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push ebp
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mov ebp, esp
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push dword [esi + 4]
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push ecx
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call pci_enumerate_bus
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mov esp, ebp
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pop ebp
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; Add the number of devices found on the bus
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; to the number of devices found in total.
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add [esi], eax
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mov ebx, [esi + 4]
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add [ebx + PCI_DEVICE_COUNT_OFFSET], ax
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; Go to the next bus (if there is one)
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inc ecx
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cmp ecx, 256
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jb .bus_loop_body
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.epilog:
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mov ebx, [esi + (64 - 8)]
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mov ecx, [esi + (64 - 12)]
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mov edx, [esi + (64 - 16)]
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mov edi, [esi + (64 - 20)]
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mov eax, [esi]
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add esp, 64
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pop dword esi
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ret
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