A new user-memory module owns every kernel touch of a user buffer: copyFromUser, the new copyToUser, and the resolve behind both. The walk accumulates the U/S and writable bits down all four levels with the MMU's own AND rule — folding a 2 MiB leaf in before it resolves and refusing a 1 GiB leaf outright — so a copy honours what ring 3 itself would be allowed, closing the presence-only trust model the IPC layer carried since bring-up. It then confirms the frame is physmap-backed, because that is how the copy reaches it: an mmio_map'd BAR passes the permission walk and would otherwise fault ring 0 on an alias the physmap never mapped, on the IPC path as much as the new one. The nine stragglers that dereferenced user pointers raw now route through it, so a bad pointer returns -EFAULT where it used to fault the kernel. The write direction restructures its callees around kernel bounce buffers: scheduler and devices-broker enumerate from a slot cursor (a task exiting between chunks can neither duplicate nor lose an entry), klog_read drains the ring in chunks, and fs_node stages headers and names contiguously. fs_resolve copies out before installing the endpoint handle, so a faulting copy cannot strand a capability; its out-capacity bound no longer adds an unbounded ring-3 length to the base, which wrapped and trapped the kernel's own overflow check. debug_write reads the caller's message once. Suite 107/107 (new user-memory case: seven bad pointers refused, each paired with a sound call that must still succeed). |
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| .. | ||
| apic.zig | ||
| cpu.zig | ||
| gdt.zig | ||
| idt.zig | ||
| io.zig | ||
| ioapic.zig | ||
| iommu-amd.zig | ||
| iommu-intel.zig | ||
| iommu.zig | ||
| isr.s | ||
| linker.ld | ||
| paging.zig | ||
| per-cpu.zig | ||
| serial.zig | ||
| smp.zig | ||
| trampoline.s | ||
| tss.zig | ||