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@ -6,8 +6,10 @@ SPDX-License-Identifier: MIT
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import sys
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from dataclasses import dataclass
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from math import log2, ceil
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from typing import Dict, IO
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from .types import BinaryDataMemorySection, MemoryFlags
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from .colors import FMT_SYSCALL, FMT_NONE
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from .types import Int32, CPU
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from .types.exceptions import InvalidSyscallException
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@ -16,6 +18,7 @@ SYSCALLS = {
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63: 'read',
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64: 'write',
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93: 'exit',
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192: 'mmap2',
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1024: 'open',
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1025: 'close',
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}
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@ -27,6 +30,18 @@ dictionary and implement a method with the same name on the SyscallInterface
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class.
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"""
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ADDITIONAL_SYMBOLS = {
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'MAP_PRIVATE': 1<<0,
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'MAP_SHARED': 1<<1,
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'MAP_ANON': 1<<2,
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'MAP_ANONYMOUS': 1<<2,
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'PROT_READ': 1<<0,
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'PROT_WRITE': 1<<1,
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}
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"""
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A set of additional symbols that are used by various syscalls.
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"""
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OPEN_MODES = {
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0: 'rb',
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1: 'wb',
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@ -56,7 +71,7 @@ class Syscall:
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self.id, self.name
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)
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def ret(self, code):
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def ret(self, code: int | Int32):
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self.cpu.regs.set('a0', Int32(code))
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@ -66,10 +81,14 @@ def get_syscall_symbols():
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:return: dictionary of all syscall symbols (SCALL_<name> -> id)
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"""
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return {
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items: Dict[str, int] = {
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('SCALL_' + name.upper()): num for num, name in SYSCALLS.items()
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}
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items.update(ADDITIONAL_SYMBOLS)
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return items
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class SyscallInterface:
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"""
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@ -198,6 +217,57 @@ class SyscallInterface:
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scall.cpu.halted = True
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scall.cpu.exit_code = scall.cpu.regs.get('a0').value
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def mmap2(self, scall: Syscall):
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"""
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mmap2 syscall:
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void *mmap(void *addr, size_t length, int prot, int flags,
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int fd, off_t offset);
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Only supported modes:
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addr = <any>
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prot = either PROT_READ or PROT_READ | PROT_WRITE
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flags = MAP_PRIVATE | MAP_ANONYMOUS
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fd = <ignored>
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off_t = <ignored>
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"""
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addr = scall.cpu.regs.get('a0').unsigned_value
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size = scall.cpu.regs.get('a1').unsigned_value
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prot = scall.cpu.regs.get('a2').unsigned_value
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flags = scall.cpu.regs.get('a3').unsigned_value
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# error out if prot is not 1 or 3:
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# 1 = PROT_READ
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# 3 = PROT_READ | PROT_WRITE
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if prot != 1 and prot != 3:
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return scall.ret(-1)
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# round size up to multiple of 4096
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size = 4096 * ceil(size / 4096)
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section = BinaryDataMemorySection(
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bytearray(size),
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'.data.runtime-allocated',
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None,
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'system',
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base=addr,
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flags=MemoryFlags(read_only=prot != 3, executable=False)
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)
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# try to insert section
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if scall.cpu.mmu.load_section(section, addr != 0):
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return scall.ret(section.base)
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# if that failed, and we tried to force an address,
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# try again at any address
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elif addr != 0:
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section.base = 0
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if scall.cpu.mmu.load_section(section):
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return scall.ret(section.base)
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# if that didn't work, return error
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return scall.ret(-1)
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def __repr__(self):
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return "{}(\n\tfiles={}\n)".format(
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self.__class__.__name__,
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