Вирт - русифицированный паскаль. A modern, self-hosting Object Pascal compiler built for the 2020s. Zero legacy, full ARC, and unified UTF-8.
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Graeme Geldenhuys 935bd5237d fix(qbe): support interface-typed fields inside records and classes
An interface stored in a record/class field could not be used: assigning a
class into such a field dropped the itab and skipped ARC, calling a method
through the field emitted an undefined %_var__obj temp that QBE rejected, and
the field was sized 8 bytes so a following field overlapped the itab slot.

Root cause: interfaces have two in-memory representations.  A named interface
local/global uses two SEPARATELY-allocated slots (%_var_X_obj, %_var_X_itab);
an interface stored in a record/class field uses a CONTIGUOUS 16-byte fat
pointer (obj@+0, itab@+8).  The codegen only knew how to read/write the
split-slot form, so any field-access receiver fell through to the split-slot
path and emitted undefined temps, and the field was never sized for 16 bytes.

This commit:

  * uSymbolTable.pas — adds tyInterface: Result := 16 to RawSize and ByteSize
    (fat pointer).  Record/class field offsets and TotalSize flow from
    ByteSize, so a following field now sits past the itab.  AllocAlign stays 8
    (two 8-byte slots).  Interface LOCALS are unaffected — their split slots
    are allocated by hardcoded codegen, not from these sizes.  LAYOUT-CHANGING:
    requires a stage-2 rebuild to validate.
  * EmitInterfaceExprPair — adds a TFieldAccessExpr case that loads obj/itab
    from the field's contiguous memory (addr / addr+8), so an interface read
    from a record field can be passed as an argument or dispatched on.
  * Both interface method-dispatch sites (EmitMethodCall and the
    TMethodCallExpr emitter) route an expression receiver through
    EmitInterfaceExprPair instead of the %_var_<ObjectName>_obj/_itab naming
    that only a named local has.
  * EmitFieldAssignment — adds a tyInterface case that stores the fat pointer
    (obj@Ptr, itab@Ptr+8) with ARC via EmitInterfaceToFieldSlots, skipping the
    single-value EmitExpr that would drop the itab.
  * EmitInterfaceToFieldSlots — takes the destination interface type and, for a
    class source, references the static $itab_<Class>_<Interface> symbol (as
    the interface direct-assignment path does) instead of a bogus _GetItab call
    keyed only by the class typeinfo, which returned the wrong itab.

Verified: interface-in-record assign + method dispatch + record copy all run
correctly; plain interface locals unchanged; full suite OK (2671 tests),
self-compile clean, --debug leak count unchanged at 339, FIXPOINT_OK.

Tests: e2e TestRun_Record_InterfaceField_AssignCallAndCopy plus IR tests
asserting no undefined %_var__obj temp, use of the static itab, and the
16-byte field layout (Tag at offset 16).
2026-06-08 17:50:32 +01:00
.github Add Patreon funding configuration 2026-05-13 08:54:21 +01:00
compiler fix(qbe): support interface-typed fields inside records and classes 2026-06-08 17:50:32 +01:00
docs docs: update language rationale and grammar for codepoint iteration 2026-06-07 23:58:06 +01:00
plugins chore(license): relicense from BSD-3-Clause to Apache 2.0 + Runtime Library Exception 2026-05-03 19:45:29 +01:00
runtime fix(qbe): refcount dyn-array, interface, and nested-record fields in records 2026-06-07 20:28:16 -04:00
scripts refactor(lang): remove IsNoArgFuncCall dead code, fix remaining bare calls 2026-06-06 20:28:13 +01:00
stdlib perf(rtl): SIMD-accelerated UTF-8 codepoint counting (SSE2 + AVX2) 2026-06-07 23:56:12 +01:00
tests test(bench): record TList<TObject> scan speedup from ARC elision 2026-05-21 17:28:44 +01:00
tools fix(bif): resolve bif-coverage gaps for current master 2026-06-08 00:34:12 +01:00
vendor/qbe vendor: update QBE from v1.2 to v1.3 2026-06-02 16:54:51 +01:00
.gitignore chore: remove progress-native-backend.txt from tracking; add to .gitignore 2026-06-03 14:38:13 +01:00
LICENSE chore(license): relicense from BSD-3-Clause to Apache 2.0 + Runtime Library Exception 2026-05-03 19:45:29 +01:00
NOTICE chore(license): relicense from BSD-3-Clause to Apache 2.0 + Runtime Library Exception 2026-05-03 19:45:29 +01:00
project.xml feat(tools): add bif-coverage verifier for AST/encoder/decoder drift 2026-06-08 00:27:24 +01:00
README.adoc docs: update test count to 2627 for v0.10.0 2026-06-07 02:09:35 +01:00

= Blaise Pascal Compiler
:icons: font
:source-highlighter: rouge

**The Pascal you love, reimagined for the modern era.**

Blaise is a next-generation Object Pascal compiler built from the ground up to eliminate decades of legacy baggage. It prioritizes developer productivity, memory safety, and high-performance execution.


== ✨ The Vision

The Object Pascal ecosystem has two options: Embarcadero Delphi (proprietary,
Windows-first) and Free Pascal (open source but carrying 30 years of accumulated
complexity — five language modes, five string types, and thousands of include files).

This compiler takes a different approach:

* *One language mode.* No `{$mode}` switches; no legacy dialect support.
* *One string type.* UTF-8 reference-counted string and 0-based indexing. `RawBytes` for binary data.
* *One memory model.* Automatic reference counting applies uniformly to
  strings, classes, and interfaces. No manual/auto split between `TObject`
  and `TInterfacedObject`; `[Weak]` breaks cycles. `Free` is retained as a
  synonym for immediate release.
* *Clean interfaces.* No COM GUIDs; interface dispatch via compile-time vtable mapping.
* *Reified generics.* Monomorphization at compile time — no type erasure.
* *Modern build system.* PasBuild with `project.xml`; no makefiles.
* *First-class debugger.* OPDF is the default debug format; DWARF is not required.

See link:docs/design.adoc[docs/design.adoc] for the full architecture and
implementation plan.

The result — A modern, cross-platform Object Pascal compiler targeting native code via
https://c9x.me/compile/[QBE] (and eventually LLVM). Single language mode,
single string type, zero-GUID interfaces, reified generics, and first-class
https://github.com/graemeg/opdebugger[OPDF] debug format support.


== 🚀 Project Status

* **Self-Hosting:** Yes. Blaise bootstraps and recompiles itself with byte-for-byte fixpoint. FPC is no longer required — the entire toolchain runs on Blaise alone.
* **Testing:** 2627 tests and growing (Test-Driven Development from day one). The test suite itself compiles under Blaise.
* **Backends:** Currently utilising a QBE backend, with an LLVM backend in active development.


[cols="1,3,1", options="header"]
|===
| Phase | Goal | Status

| 1
| Bootstrap pipeline — Hello World on Linux x86_64 via PasBuild
| Complete ✅

| 2
| Type system — classes, records, ARC, exceptions
| Complete ✅

| 3
| Generics + zero-GUID interfaces
| Complete ✅

| 4
| OPDF debug info emission
| Complete ✅

| 5
| Self-hosting
| Complete ✅

| 6
| Language improvements + expand RTL & StdLib + bug fixing
| In-Progress

| 7
| LLVM + Windows + macOS ARM64
| Planned

| 8
| LSP + VS Code extension
| Planned

| 9
| Migration analyser for FPC/Delphi codebases
| Planned
|===

== What Is Dropped From Classic Pascal

[cols="1,3", options="header"]
|===
| Feature | Reason for removal

| `ShortString`, `AnsiString`, `WideString`, `UnicodeString`
| Replaced by a single UTF-8 reference-counted `string` type

| `with` statement
| Source of hard-to-diagnose symbol resolution bugs; breaks static analysis

| Old-style `object` types
| Use `record` (stack/value) or `class` (heap/reference) instead

| COM-style interface GUIDs
| Interface dispatch via compile-time vtable; GUIDs are unnecessary complexity

| Multiple language modes
| One dialect, maintained well, beats five dialects maintained poorly

| `assign`, `reset`, `rewrite`, `blockread`
| Replaced by a stream-based I/O RTL

| `TObject` vs `TInterfacedObject` split
| One unified class model under automatic reference counting; `[Weak]`
  breaks cycles
|===

== 📢 Community

The core architecture is still being finalised, so the project is not yet
accepting code contributions. Feedback on language design, syntax choices, and
the future direction of Blaise is very welcome — please use the
https://github.com/graemeg/blaise/discussions[Discussions] tab on GitHub.


== Repository Layout

This project uses PasBuild's multi-module layout. Each subdirectory with a
`project.xml` is an independent module; the root `project.xml` is the aggregator.

....
project.xml                       Root aggregator (packaging=pom)
│
├── compiler/                     The compiler binary (packaging=application)
│   ├── project.xml
│   └── src/
│       ├── main/pascal/          uLexer, uParser, uAST, uCodeGenQBE, ...
│       └── test/pascal/          Test suite (blaise.testing, compiled by Blaise)
│
├── runtime/                      Always-linked runtime (packaging=library)
│   ├── project.xml
│   ├── Makefile
│   └── src/
│       ├── main/c/               C shims (blaise_exc.c, blaise_io.c, ...)
│       ├── main/pascal/          system.pas, blaise_str.pas, blaise_arc.pas, ...
│       └── test/pascal/          Runtime tests (punit, compiled by Blaise)
│
├── stdlib/                       Standard library — opt-in via uses clause
│   ├── project.xml
│   └── src/
│       └── main/pascal/          sysutils.pas, classes.pas, math.pas, ...
│
├── tools/
│   └── migration-analyser/       FPC/Delphi migration report tool (packaging=application)
│       ├── project.xml           depends on compiler module
│       └── src/
│           ├── main/pascal/
│           └── test/pascal/
│
├── vendor/qbe/                   Vendored QBE backend source (pinned, built from source)
└── docs/                         Design documents and specifications
....

PasBuild compiles each module to its own `target/` subdirectory. Build output is
never committed to the repository.

== Building

=== Prerequisites

* A previously released Blaise binary (see `releases/`)
* https://github.com/graemeg/pasbuild[PasBuild]
* A C compiler (`gcc` or `clang`) for building the vendored QBE backend and linking
* GNU `make` for the runtime build

NOTE: FPC is *not* required. Blaise is fully self-hosting — each release binary
compiles the next version. The bootstrap chain starts from the binary in
`releases/`.

=== Bootstrap from a release

The runtime build compiles its Pascal units (`blaise_str.pas`, `blaise_arc.pas`,
`blaise_sys.pas`) using the Blaise binary at `compiler/target/blaise`. On a
clean checkout that binary does not exist yet, so the release binary must be
passed explicitly via the `BLAISE` make variable.

[source,shell]
----
# 0. Build the vendored QBE backend (once-off — not needed again unless
#    you update vendor/qbe/)
cd vendor/qbe && make && cd ../..

# 1. Build the runtime using the release binary (BLAISE= avoids chicken-and-egg)
cd runtime && make BLAISE=../releases/v0.7.0/blaise && make install && cd ..

# 2. Compile the compiler using the latest release binary
releases/v0.7.0/blaise \
  --source compiler/src/main/pascal/Blaise.pas \
  --unit-path compiler/src/main/pascal \
  --unit-path runtime/src/main/pascal \
  --unit-path stdlib/src/main/pascal \
  --emit-ir > /tmp/blaise.ssa

# 3. Assemble and link
vendor/qbe/qbe -o /tmp/blaise.s /tmp/blaise.ssa
gcc -o compiler/target/blaise /tmp/blaise.s compiler/target/blaise_rtl.a
----

Once `compiler/target/blaise` exists, subsequent RTL rebuilds (`make && make install`)
work without the override. The QBE build in step 0 is a one-off and does not
need to be repeated when rebuilding the compiler.

=== Bootstrap a development checkout

The procedure above works while the latest release binary is new enough to
compile the current source. Between releases that ceases to hold: once a commit
teaches the parser a new feature and a later commit uses it in the
runtime/compiler, the release binary can no longer build `master` directly.

`scripts/rolling-bootstrap.sh` rebuilds the chain commit-by-commit from the last
release binary up to the checked-out revision, producing a working `-pre`
bootstrap binary. See link:scripts/BOOTSTRAP.adoc[scripts/BOOTSTRAP.adoc] for the
prerequisite (placing the release binary under `releases/`) and usage.

=== Build via PasBuild

PasBuild can drive the full compile and test cycle using a Blaise binary:

[source,shell]
----
pasbuild compile -m blaise-compiler --compiler compiler/target/blaise
pasbuild test -m blaise-compiler --compiler compiler/target/blaise
----

=== Run tests

[source,shell]
----
pasbuild test -m blaise-compiler --compiler compiler/target/blaise
----

=== Verify self-hosting fixpoint

After any compiler change, verify that the compiler reproduces itself:

[source,shell]
----
./scripts/fixpoint.sh
----

This generates stage-2 and stage-3 IR and confirms they are identical.

=== Running the compiler

Once built, the compiler binary is at `compiler/target/blaise`.

[source,shell]
----
# Compile a single-file program
compiler/target/blaise --source Hello.pas --emit-ir > Hello.ssa
vendor/qbe/qbe -o Hello.s Hello.ssa
gcc -o Hello Hello.s compiler/target/blaise_rtl.a

# Compile with unit search paths
compiler/target/blaise --source MyApp.pas \
  --unit-path src/units \
  --emit-ir > MyApp.ssa

# Emit QBE IR only (useful for debugging the compiler itself)
compiler/target/blaise --source Hello.pas --emit-ir
----

== Licence

Apache License v2.0 with Runtime Library Exception. See link:LICENSE[LICENSE].


---
*Built with ❤️ for the Pascal community by Graeme.*