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authorbellard <bellard@c046a42c-6fe2-441c-8c8c-71466251a162>2004-07-14 19:20:07 +0000
committerbellard <bellard@c046a42c-6fe2-441c-8c8c-71466251a162>2004-07-14 19:20:07 +0000
commit3eb2619fe55aa7b040aba4fbf9242c50d0a9672e (patch)
tree5f709a90ee2a94217cf39617ab8116882332f291
parent3e11db9a0c82851a8c13e45c654856cdea2294d7 (diff)
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update
git-svn-id: svn://svn.savannah.nongnu.org/qemu/trunk@1029 c046a42c-6fe2-441c-8c8c-71466251a162
-rw-r--r--qemu-doc.texi12
1 files changed, 9 insertions, 3 deletions
diff --git a/qemu-doc.texi b/qemu-doc.texi
index e74e793..d3c0a16 100644
--- a/qemu-doc.texi
+++ b/qemu-doc.texi
@@ -89,11 +89,17 @@ available:
simulate the x86 MMU. It is @emph{fast} but has limitations because
the whole 4 GB address space cannot be used and some memory mapped
peripherials cannot be emulated accurately yet. Therefore, a specific
-guest Linux kernel can be used (@xref{linux_compile}) as guest OS.
+guest Linux kernel can be used (@xref{linux_compile}) as guest
+OS.
+
+Moreover there is no separation between the host and target address
+spaces, so it offers no security (the target OS can modify the
+@code{qemu-fast} code by writing at the right addresses).
@item
-@code{qemu} uses a software MMU. It is about @emph{two times
-slower} but gives a more accurate emulation.
+@code{qemu} uses a software MMU. It is about @emph{two times slower}
+but gives a more accurate emulation and a complete separation between
+the host and target address spaces.
@end enumerate