Commit Graph

11 Commits

Author SHA1 Message Date
Jakob Stoklund Olesen
0694384728 Generate Intel encoding recipes on demand.
Cretonne's encoding recipes need to have a fixed size so we can compute
accurate branch destination addresses. Intel's instruction encoding has
a lot of variance in the number of bytes needed to encode the opcode
which leads to a number of duplicated encoding recipes that only differ
in the opcode size.

Add an Intel-specific TailEnc Python class which represents an
abstraction over a set of recipes that are identical except for the
opcode encoding. The TailEnc can then generate specific encoding recipes
for each opcode format.

The opcode format is a prefix of the recipe name, so for example, the
'rr' TailEnc will generate the 'Op1rr', 'Op2rr', 'Mp2rr' etc recipes.

The TailEnc class provides a __call__ implementation that simply takes
the sequence of opcode bytes as arguments. It then looks up the right
prefix for the opcode bytes.
2017-05-14 11:53:44 -07:00
Jakob Stoklund Olesen
9629867d0c Encodings for load/store instructions.
We don't support the full set of Intel addressing modes yet. So far we
have:

- Register indirect, no displacement.
- Register indirect, 8-bit signed displacement.
- Register indirect, 32-bit signed displacement.

The SIB addressing modes will need new Cretonne instruction formats to
represent.
2017-05-12 16:49:39 -07:00
Jakob Stoklund Olesen
c998df6274 Add subtract and logical instruction encodings to Intel-32.
Also add versions with 8-bit and 32-bit immediate operands.
2017-05-12 15:37:12 -07:00
Jakob Stoklund Olesen
cdb3a71dd1 Add encodings for Intel dynamic shift instructions.
These instructions have a fixed register constraint; the shift amount is
passed in CL.

Add meta language syntax so a fixed register can be specified as
"GPR.rcx".
2017-05-09 13:11:50 -07:00
Jakob Stoklund Olesen
5bdb61a5f1 Add the very basics of Intel 32-bit instruction encodings.
Tabulate the Intel opcode representations and implement an OP() function
which computes the encoding bits.

Implement the single-byte opcode with a reg-reg ModR/M byte.
2017-05-08 16:57:38 -07:00
Jakob Stoklund Olesen
ae926157c2 Generate register class descriptors.
Add a mechanism for defining sub-classes of register classes.
2017-01-20 14:23:06 -08:00
Jakob Stoklund Olesen
19ac05577c Fill in boilerplate for Intel and ARM targets.
The intel, arm32, and arm32 targets were only defined in the meta
language previously. Add Rust implementations too.

This is mostly boilerplate, except for the unit tests in the
registers.rs files.
2016-11-23 10:42:07 -08:00
Jakob Stoklund Olesen
1f6dd0dab7 Generate register bank descriptions.
Use the information in the ISA's registers.py files to generate a
RegInfo Rust data structure.
2016-11-22 18:15:21 -08:00
Jakob Stoklund Olesen
4192ba0532 Define register classes for 4 ISAs. 2016-11-11 15:08:12 -08:00
Jakob Stoklund Olesen
b0b6a8f693 Define register banks.
Add a RegBank class for describing CPU register banks.

Define register banks for all the ISA stubs. The ARM32 floating point
bank in particular requires attention.
2016-11-11 14:17:10 -08:00
Jakob Stoklund Olesen
77c672a279 Add stubs for Intel and ARM architectures.
The Intel ISA handles both 32-bit and 64-bit code.

ARM is split into separate arm32 and arm64 ISAs since the architectures
have little in common in instruction encodings and register files.
2016-11-11 11:32:05 -08:00