mirror of
git://projects.qi-hardware.com/iris.git
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413 lines
11 KiB
COBOL
413 lines
11 KiB
COBOL
#pypp 0
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// Iris: micro-kernel for a capability-based operating system.
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// alloc.ccp: Allocation of kernel structures.
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// Copyright 2009 Bas Wijnen <wijnen@debian.org>
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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#include "kernel.hh"
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#define PREV(x) (((Object_base **)(x))[-2])
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#define NEXT(x) (((Object_base **)(x))[-1])
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#define SIZE (2 * sizeof (Object_base *))
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bool Memory::use ():
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// Go up to parents, incrementing used.
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for Memory *m = this; m; m = m->address_space:
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if used >= limit:
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// Not allowed. Restore used for all children.
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for Memory *r = this; r != m; r = r->address_space:
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--r->used
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return false
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++m->used
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return true
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void Memory::unuse ():
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for Memory *m = this; m; m = m->address_space:
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--m->used
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unsigned raw_zalloc ():
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FreePage *ret = zero_pages
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if !ret:
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ret = junk_pages
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for unsigned i = 1; i < (PAGE_SIZE >> 2); ++i:
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((unsigned *)ret)[i] = 0
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junk_pages = ret->next
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else:
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zero_pages = ret->next
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ret->next = NULL
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return (unsigned)ret
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void raw_pfree (unsigned page):
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if !page:
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return
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FreePage *p = (FreePage *)page
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p->next = junk_pages
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junk_pages = p
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unsigned Memory::palloc ():
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if !use ():
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return NULL
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FreePage *ret = junk_pages
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if !ret:
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ret = zero_pages
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zero_pages = ret->next
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else:
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junk_pages = ret->next
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return (unsigned)ret
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unsigned Memory::zalloc ():
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if !use ():
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return NULL
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return raw_zalloc ()
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void Memory::pfree (unsigned page):
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unuse ()
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return raw_pfree (page)
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void Memory::zfree (unsigned page):
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unuse ()
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FreePage *p = (FreePage *)page
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p->next = zero_pages
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zero_pages = p
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void *Memory::search_free (unsigned size, void **first):
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Free *f
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unsigned s = 0
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for f = frees; f; f = f->next:
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if NEXT (f):
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s = (unsigned)NEXT (f) - (unsigned)f
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else:
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s = PAGE_SIZE - ((unsigned)f & ~PAGE_MASK) + SIZE
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if s >= size + SIZE:
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break
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if !f:
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unsigned p = palloc ()
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if !p:
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return NULL
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f = (Free *)(p + SIZE)
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f->marker = ~0
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f->next = frees
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f->prev = NULL
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frees = f
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if f->next:
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f->next->prev = f
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NEXT (f) = NULL
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PREV (f) = NULL
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s = PAGE_SIZE
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// We have a free block, possibly too large.
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if s >= size + sizeof (Free) + 2 * SIZE:
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// Create the new object at the end and keep the Free.
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Free *obj = (Free *)((unsigned)f + s - size - SIZE)
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NEXT (obj) = NEXT (f)
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if NEXT (obj):
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PREV (NEXT (obj)) = obj
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PREV (obj) = f
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NEXT (f) = obj
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f = obj
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else:
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if f->prev:
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f->prev->next = f->next
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else:
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frees = f->next
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if f->next:
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f->next->prev = f->prev
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f->address_space = this
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f->refs = NULL
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f->next = (Free *)*first
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f->prev = NULL
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if f->next:
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f->next->prev = f
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*first = f
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return f
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void Memory::free_obj (Object_base *obj):
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Free *self
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// Merge with previous, if it exists and is a Free.
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if PREV (obj) && PREV (obj)->is_free ():
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self = (Free *)PREV (obj)
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NEXT (self) = NEXT (obj)
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if NEXT (obj):
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PREV (NEXT (obj)) = self
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else:
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self = (Free *)obj
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self->next = frees
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self->prev = NULL
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if self->next:
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self->next->prev = self
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frees = self
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self->marker = ~0
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// Merge with next, if it exists and is a Free.
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if NEXT (self) && NEXT (self)->is_free ():
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NEXT (self) = NEXT (NEXT (self))
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if NEXT (self):
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PREV (NEXT (self)) = self
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// Free page if the resulting object is the only thing in it.
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if !PREV (self) && !NEXT (self):
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if self->next:
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self->next->prev = self->prev
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if self->prev:
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self->prev->next = self->next
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else:
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frees = self->next
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pfree ((unsigned)self - SIZE)
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Page *Memory::alloc_page ():
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Page *ret = (Page *)search_free (sizeof (Page), (void **)&pages)
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if !ret:
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return NULL
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ret->data.frame = 0
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ret->data.flags = 0
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return ret
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Thread *Memory::alloc_thread ():
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Thread *ret = (Thread *)search_free (sizeof (Thread), (void **)&threads)
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if !ret:
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return NULL
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ret->address_space = this
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ret->pc = 0
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ret->sp = 0
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Thread_arch_init (ret)
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ret->flags = 0
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ret->schedule_prev = NULL
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ret->schedule_next = NULL
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ret->receivers = NULL
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return ret
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Message *Memory::alloc_message (Receiver *target, unsigned protected_data):
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Message *ret = (Message *)search_free (sizeof (Message), (void **)&target->messages)
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if !ret:
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return NULL
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for unsigned i = 0; i < 4; ++i:
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ret->capabilities[i] = NULL
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ret->data[i] = 0
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ret->protected_data = protected_data
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return ret
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Receiver *Memory::alloc_receiver ():
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Receiver *ret = (Receiver *)search_free (sizeof (Receiver), (void **)&receivers)
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if !ret:
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return NULL
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ret->owner = NULL
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ret->prev_owned = NULL
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ret->next_owned = NULL
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ret->capabilities = NULL
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ret->messages = NULL
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ret->reply_protected_data = ~0
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ret->protected_only = false
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return ret
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Capability *Memory::alloc_capability (Receiver *target, Capability *parent, Capability **parent_ptr, unsigned protected_data, Capability *ret):
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if !ret:
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ret = (Capability *)search_free (sizeof (Capability), (void **)&capabilities)
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if !ret:
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return NULL
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ret->target = target
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ret->protected_data = protected_data
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ret->parent = parent
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ret->children = NULL
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ret->sibling_prev = NULL
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if parent:
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ret->sibling_next = parent->children
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parent->children = ret
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else:
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if parent_ptr:
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ret->sibling_next = *parent_ptr
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else:
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ret->sibling_next = NULL
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if ret->sibling_next:
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ret->sibling_next->sibling_prev = ret
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return ret
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Capability *Memory::clone_capability (Capability *source, bool copy, Capability *ret):
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if copy:
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if source->parent:
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return alloc_capability (source->target, source->parent, &source->parent->children, source->protected_data, ret)
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else if (unsigned)source->target & ~KERNEL_MASK:
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return alloc_capability (source->target, source->parent, &source->target->capabilities, source->protected_data, ret)
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else:
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return alloc_capability (source->target, source->parent, &((Object_base *)source->protected_data)->refs, source->protected_data, ret)
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else:
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return alloc_capability (source->target, source, &source->children, source->protected_data, ret)
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Cappage *Memory::alloc_cappage ():
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Cappage *ret = (Cappage *)search_free (sizeof (Cappage), (void **)&cappages)
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if !ret:
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return NULL
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ret->data.frame = zalloc ()
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if !ret->data.frame:
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free_cappage (ret)
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return NULL
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ret->data.flags = 0
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return ret
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Memory *Memory::alloc_memory ():
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Memory *ret = (Memory *)search_free (sizeof (Memory), (void **)&memories)
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if !ret:
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return NULL
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ret->frees = NULL
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ret->pages = NULL
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ret->threads = NULL
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ret->memories = NULL
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ret->limit = ~0
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ret->used = 0
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Memory_arch_init (ret)
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return ret
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void Memory::free_page (Page *page):
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if page->prev:
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page->prev->next = page->next
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else:
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pages = page->next
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if page->next:
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page->next->prev = page->prev
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unuse ()
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if page->data.frame:
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pfree (page->data.frame)
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free_obj (page)
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void Memory::free_thread (Thread *thread):
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if thread->prev:
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thread->prev->next = thread->next
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else:
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threads = thread->next
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if thread->next:
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thread->next->prev = thread->prev
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// Unschedule.
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if thread->schedule_prev:
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thread->schedule_prev->schedule_next = thread->schedule_next
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else if first_scheduled == thread:
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first_scheduled = thread->schedule_next
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if thread->schedule_next:
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thread->schedule_next->schedule_prev = thread->schedule_prev
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while thread->receivers:
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thread->receivers->orphan ()
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free_obj (thread)
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void Memory::free_message (Message *message):
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for unsigned i = 0; i < 4; ++i:
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free_capability (message->capabilities[i])
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free_obj (message)
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void Memory::free_receiver (Receiver *receiver):
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receiver->orphan ()
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while receiver->capabilities:
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receiver->capabilities->invalidate ()
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while receiver->messages:
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free_message (receiver->messages)
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free_obj (receiver)
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void Receiver::orphan ():
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if prev_owned:
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prev_owned->next_owned = next_owned
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else:
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owner->receivers = next_owned
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if next_owned:
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next_owned->prev_owned = prev_owned
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owner = NULL
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void Receiver::own (Thread *o):
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if owner:
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orphan ()
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owner = o
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next_owned = o->receivers
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if next_owned:
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next_owned->prev_owned = this
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o->receivers = this
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void Memory::free_capability (Capability *capability):
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capability->invalidate ()
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free_obj (capability)
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void Capability::invalidate ():
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if !target:
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return
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if sibling_prev:
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sibling_prev->sibling_next = sibling_next
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else if (unsigned)target & ~KERNEL_MASK:
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target->capabilities = sibling_next
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else:
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((Object_base *)protected_data)->refs = sibling_next
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if sibling_next:
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sibling_next->sibling_prev = sibling_prev
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parent = NULL
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sibling_prev = NULL
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sibling_next = NULL
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Capability *c = this
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while c->children:
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c = c->children
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while c:
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Capability *next = c->sibling_next
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if !next:
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next = c->parent
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c->target = NULL
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c->parent = NULL
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c->children = NULL
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c->sibling_prev = NULL
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c->sibling_next = NULL
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c->protected_data = 0
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c = next
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void Memory::free_cappage (Cappage *p):
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for unsigned i = 0; i < CAPPAGE_SIZE; ++i:
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((Capability *)p->data.frame)[i].invalidate ()
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zfree (p->data.frame)
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free_obj (p)
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void Memory::free_memory (Memory *mem):
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if mem->prev:
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mem->prev->next = mem->next
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else:
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memories = mem->next
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if mem->next:
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mem->next->prev = mem->prev
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while mem->pages:
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free_page (mem->pages)
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while mem->threads:
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free_thread (mem->threads)
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while mem->memories:
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free_memory (mem->memories)
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Memory_arch_free (mem)
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free_obj (mem)
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void Page::forget ():
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if data.share_prev || data.share_next:
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if data.share_prev:
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((Page *)data.share_prev)->data.share_next = data.share_next
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if data.share_next:
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((Page *)data.share_next)->data.share_prev = data.share_prev
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data.share_prev = NULL
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data.share_next = NULL
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else:
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if ~data.flags & PAGE_FLAG_PHYSICAL:
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raw_pfree (data.frame)
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data.frame = 0
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data.flags &= ~(PAGE_FLAG_FRAME | PAGE_FLAG_SHARED | PAGE_FLAG_PHYSICAL | PAGE_FLAG_UNCACHED)
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Page_arch_update_mapping (this)
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void Cappage::forget ():
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if data.share_prev || data.share_next:
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if data.share_prev:
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((Cappage *)data.share_prev)->data.share_next = data.share_next
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if data.share_next:
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((Cappage *)data.share_next)->data.share_prev = data.share_prev
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data.share_prev = NULL
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data.share_next = NULL
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else:
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for unsigned i = 0; i < CAPPAGE_SIZE; ++i:
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((Capability *)data.frame)[i].invalidate ()
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raw_pfree (data.frame)
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data.frame = 0
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data.flags &= ~(PAGE_FLAG_FRAME | PAGE_FLAG_SHARED)
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