font_8x16.c keeps rendering everything through and including POST; TTF-TEXT's rasterizer takes over at the interactive REPL boundary (sk_repl()) via a new runtime mode switch, vt100_enable_ttf() (console_fb_enable_ttf() wrapper), not a compile-time swap -- both backends coexist in the same binary since boot/POST must stay font_8x16.c per this item's own done-when. TTF-TEXT (the FORTH word) isn't directly callable from vt100.c -- VM stack arguments, different call shape than a one-glyph cell draw. Used hal/ttf.c's VM-independent primitives directly instead (same rasterizer TTF-TEXT itself calls underneath), added as a native C helper in vt100.c. Lazily loads fonts:JetBrainsMono-Regular.ttf and kmallocs a 96-slot raster cache (covers all 95 printable ASCII, no eviction thrash) on first switch. Cell geometry changes at the switch (mode-aware cell_w()/cell_h()): provisional 12x24 TTF cell (600/1000em * 20px = 12px exactly, using 4.4i's confirmed-uniform hmtx advance width) vs font_8x16's fixed 8x16 -- cols/rows re-derived and screen cleared at the switch point, same as vt100_init() itself does. Final REPL text size is 4.4m's decision, not this item's. Also fixes the second call site 4.4i flagged: erase_line_range() now uses one fb_fill_rect() instead of a per-cell font_8x16-specific blank glyph draw, consistent with erase_display(2)'s full-screen case. Three-arch verified: amd64/aarch64/riscv64 all reach ok>, POST Failed: 0, identical dict-hashes. amd64 screendump shows real proportional JetBrains Mono letterforms on the REPL tail, visibly distinct from every prior font_8x16 screenshot. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
include/starkernel/
Headers for LithosAnanke, the bare-metal UEFI kernel (src/starkernel/).
Built only via Makefile.starkernel; gated by __STARKERNEL__ when shared
with hosted code.
uefi.h— UEFI protocol/type definitions consumed by the loader.elf64.h,elf_loader.h— ELF64 parsing and kernel-image loading.boot_info_offsets.h— struct-offset constants shared between the assembly bootstrap and the C boot path.arch.h,apic.h,timer.h— architecture init, APIC interrupt controller, timer (TSC/HPET/APIC, 100 Hz heartbeat).console.h,framebuffer.h,vt100.h— UART 16550 console, framebuffer driver, and VT100 terminal emulation over the framebuffer.pmm.h,vmm.h,kmalloc.h— physical memory manager (bitmap allocator), 4-level x86_64 paging, kernel heap allocator.pci.h,virtio_blk.h— PCI enumeration and the VirtIO block device driver (disk backend for the kernel block subsystem).capsule.h,capsule_birth.h,capsule_loader.h,capsule_run.h,capsule_vm_physics.h,capsule_generated.h— capsule system types, birth protocol, physics-runtime capsule bindings, and the build-time- generated capsule directory (seetools/mkcapsule.c).kernel_args.h,cmdline.h— boot-time kernel argument parsing (starforth.cfg/ command line).repl.h— kernel REPL.log.h,doe_log.h— kernel logging and DoE metrics logging.q48_16.h— kernel-build copy of Q48.16 fixed-point arithmetic.xxhash64.h— content-addressing hash used for capsule IDs.hal_memory.h— hardware-abstraction-layer memory interface.
Subdirectories:
hal/— top-level hardware-abstraction-layer interface.vm/— kernel VM subsystem headers (capsule arena, parity logging, bootstrap wiring).freestanding/— minimal libc-shim headers (assert.h,ctype.h,errno.h,inttypes.h,math.h,sched.h,signal.h,stdio.h,stdlib.h,string.h,time.h,sys/time.h,sys/types.h) for building shared VM code in the freestanding kernel environment, where no real libc is available.