Commit Graph

15 Commits

Author SHA1 Message Date
Alessandro Di Federico fd30d3de42 Import the model's type system
This commit introduces the type system of the model along with several
various other improvements to the model and its users.

* Introduce the type system.
* Introduce possibility to tag certain fields in the model as to be
  optional during YAML serialization.
* All the `Name` fields have been replaced in favor of `CustomName` plus
  a `name` method that will use `CustomName` if available, or an
  automatically generated name otherwise.
* Make TupleTreeReferences behavior more robust: now you either need to
  have a valid pointer to `Root` and a `Path` or be default constructed
  (`nullptr` for `Root` and an empty `Path`). Any other configuration is
  invalid.
* The type system introduces `RawFunctionType`: this superseds the
  previous way in which we were specifying arguments and return
  values. Users of such information have been updated accordingly.
2021-07-21 18:22:58 +02:00
Alessandro Di Federico 1db6e5db5b MetaAddress: handle invalid values in operator+= 2021-03-06 16:59:38 +01:00
Alessandro Di Federico f2c83d2f67 Introduce PlainMetaAddress
This commit extracts a plain `struct` from the `MetaAddress` class. This
enables us to use `MetaAddress` from C and therefore, runtime.

The definition of such `struct`, `PlainMetaAddress`, is in
`PlainMetaAddress.h`, which is included by `early-linked.c`.

A function to print the content of a `PlainMetaAddress` has also been
introduced.

Also, anticipating the linkage of `early-linked.c` triggered a
superflous assertion in `CPUStateAccessAnalysis`. This commit removes
it.
2021-02-19 09:39:49 +01:00
Alessandro Di Federico 7f86530e74 MetaAddress::verify: handle invalid types 2021-02-17 11:44:23 +01:00
Alessandro Di Federico e72bcf796f Simplify MetaAddress::operator== 2021-01-26 18:42:10 +01:00
Alessandro Di Federico 7a560adbfa MetaAddress: drop std::less specialization 2021-01-26 18:42:10 +01:00
Pietro Fezzardi 9869f057b9 Use #pragma once for header include guards 2020-11-13 14:12:18 +01:00
Pietro Fezzardi cd9bc34d9d Enforce new include conventions 2020-11-13 10:00:24 +01:00
Alessandro Di Federico 60fdcbc66a Whitespace changes 2020-10-01 17:40:17 +02:00
Alessandro Di Federico ae3c800109 Implement MetaAddress::{from,to}String 2020-09-02 18:21:07 +02:00
Alessandro Di Federico e62cbb5ceb Implement comparison operators for MetaAddress 2020-09-02 16:55:20 +02:00
Alessandro Di Federico b7660a06c3 [MetaAddress] Fix tie type
The tuple returned by the `tie` method used to have the type of the
`Type` field (`uint16_t`) for the `Address` field (`uint64_t`) and
viceversa.
2020-06-29 23:49:52 +02:00
Alain Carlucci be9bc6ce0a MetaAddress: remove header dependency from IRBuilder 2020-06-25 14:28:07 +02:00
Alessandro Di Federico d10178483d Introduce the new MetaAddress
Unlike the previous iteration of `MetaAddress`, which tried to stuff all
the parts of `MetaAddress` within the existing `PC` CSV, this
implementation adds a set of new CSVs (or marks some existing ones as) to
represent the four portions of the current PC's `MetaAddress`.

* Introduce `ProgramCounterHandler`: a class responsible to maintain the
  PC-related CSVs. This class is also used to manipulate the new
  dispatcher.
* `AdvancedValueInfo`: update for new MetaAddress.
* External jump handler: do not clobber registers.
  When introducing support for dynamic binaries, we didn't realize that
  in x86-64 we were clobbering `r11`. To avoid this, we have to jump to
  an address stored in memory. However, due to the new `MetaAddress`,
  obtaining a *jumpable* address from the PC-related CSVs might require
  some computations (and it does in ARM). Therefore, we introduce a new
  global variable, `jumpablepc`, whose only role is to contain the
  jumpable version of the program counter and then be the target of the
  memory-indirect jump instruction.
* Labels care only about absolute addresses.
* CSAA: mark call site, even if no accesses.
2020-06-02 10:57:02 +02:00
Alessandro Di Federico dc48188f37 Introduce MetaAddress
`MetaAddress` replaces all the `uint64_t` used to represent a virtual
address. Its main features are:

* It has a non-zero representation of invalid addresses.
* It supports tags to represent code that has different interpretations but
  resides at the same address in memory (namely ARM vs Thumb).
* Arithmetic operations cannot overflow.
* It supports epochs, a way we intend to employ to handle self-modifying code
  (i.e., different code at the same address at different times).
* It supports "address spaces", which enable handling architectures with
  multiple address spaces.
* It fits in two 64-bit registers.
2020-05-14 11:58:18 +02:00