mirror of
git://projects.qi-hardware.com/iris.git
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292 lines
8.3 KiB
COBOL
292 lines
8.3 KiB
COBOL
#pypp 0
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// Iris: micro-kernel for a capability-based operating system.
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// mips/arch.ccp: Most mips-specific parts.
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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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#define ARCH
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#include "../kernel.hh"
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void kThread_arch_init (kThread *thread):
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thread->arch.at = 0
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for unsigned i = 0; i < 2; ++i:
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thread->arch.v[i] = 0
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thread->arch.k[i] = 0
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for unsigned i = 0; i < 4; ++i:
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thread->arch.a[i] = 0
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for unsigned i = 0; i < 10; ++i:
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thread->arch.t[i] = 0
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thread->arch.gp = 0
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thread->arch.fp = 0
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thread->arch.ra = 0
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thread->arch.hi = 0
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thread->arch.lo = 0
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void kThread_arch_receive (kThread *thread, Kernel::Num protected_data, Kernel::Num *data):
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thread->arch.a[0] = data[0].l
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thread->arch.a[1] = data[0].h
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thread->arch.a[2] = data[1].l
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thread->arch.a[3] = data[1].h
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thread->arch.t[0] = protected_data.l
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thread->arch.t[1] = protected_data.h
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unsigned *kThread_arch_info (kThread *thread, unsigned num):
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switch num:
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case 1:
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return &thread->arch.at
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case 2:
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return &thread->arch.v[0]
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case 3:
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return &thread->arch.v[1]
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case 4:
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return &thread->arch.a[0]
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case 5:
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return &thread->arch.a[1]
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case 6:
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return &thread->arch.a[2]
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case 7:
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return &thread->arch.a[3]
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case 8:
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return &thread->arch.t[0]
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case 9:
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return &thread->arch.t[1]
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case 10:
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return &thread->arch.t[2]
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case 11:
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return &thread->arch.t[3]
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case 12:
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return &thread->arch.t[4]
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case 13:
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return &thread->arch.t[5]
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case 14:
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return &thread->arch.t[6]
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case 15:
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return &thread->arch.t[7]
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case 16:
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return &thread->arch.s[0]
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case 17:
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return &thread->arch.s[1]
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case 18:
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return &thread->arch.s[2]
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case 19:
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return &thread->arch.s[3]
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case 20:
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return &thread->arch.s[4]
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case 21:
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return &thread->arch.s[5]
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case 22:
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return &thread->arch.s[6]
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case 23:
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return &thread->arch.s[7]
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case 24:
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return &thread->arch.t[8]
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case 25:
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return &thread->arch.t[9]
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case 26:
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return &thread->arch.k[0]
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case 27:
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return &thread->arch.k[1]
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case 28:
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return &thread->arch.gp
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case 29:
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return &thread->sp
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case 30:
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return &thread->arch.fp
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case 31:
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return &thread->arch.ra
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default:
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return NULL
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void kMemory_arch_init (kMemory *mem):
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mem->arch.asid = 1
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mem->arch.directory = NULL
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mem->arch.shadow = NULL
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void kMemory_arch_free (kMemory *mem):
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while mem->arch.first_page_table:
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mem->unmap (mem->arch.first_page_table->first_page->page, mem->arch.first_page_table->first_page->mapping)
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if (kMemory *)asids[mem->arch.asid] == mem:
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flush_tlb (mem->arch.asid)
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asids[mem->arch.asid] = asids[0]
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asids[0] = mem->arch.asid
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mem->unuse ()
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mem->zfree ((unsigned)mem->arch.directory)
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static arch_page_table *alloc_page_table (kMemory *mem):
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arch_page_table *ret = (arch_page_table *)mem->search_free (sizeof (arch_page_table), (void **)&mem->arch.first_page_table)
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if !ret:
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return NULL
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ret->first_page = NULL
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return ret
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static arch_page *alloc_page (kMemory *mem, arch_page_table *t):
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arch_page *ret = (arch_page *)mem->search_free (sizeof (arch_page), (void **)&t->first_page)
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if !ret:
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return NULL
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ret->page = NULL
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ret->mapping = ~0
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ret->prev_mapped = NULL
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ret->next_mapped = NULL
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return ret
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static void free_page_table (arch_page_table *t, unsigned idx):
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kMemory *mem = t->address_space
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mem->zfree ((unsigned)mem->arch.directory[idx])
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mem->arch.directory[idx] = NULL
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mem->arch.shadow[idx] = NULL
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mem->free_obj (t, (void **)&mem->arch.first_page_table)
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if !mem->arch.first_page_table:
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mem->zfree ((unsigned)mem->arch.directory)
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mem->zfree ((unsigned)mem->arch.shadow)
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mem->arch.directory = NULL
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mem->arch.shadow = NULL
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static void tlb_reset (unsigned address, unsigned asid, unsigned value):
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cp0_set (CP0_ENTRY_HI, address | asid)
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__asm__ volatile ("tlbp")
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unsigned idx
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cp0_get (CP0_INDEX, idx)
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if ~idx & 0x80000000:
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if address & (1 << PAGE_BITS):
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cp0_set (CP0_ENTRY_LO1, value)
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else:
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cp0_set (CP0_ENTRY_LO0, value)
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__asm__ volatile ("tlbwi")
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static void free_page (arch_page_table *t, arch_page *p):
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if p->prev_mapped:
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p->prev_mapped->next_mapped = p->next_mapped
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else:
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p->page->arch.first_mapped = p->next_mapped
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if p->next_mapped:
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p->next_mapped->prev_mapped = p->prev_mapped
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tlb_reset (p->mapping, p->address_space->arch.asid, 0)
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unsigned idx = p->mapping >> 21
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p->address_space->free_obj (p, (void **)&t->first_page)
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if !t->first_page:
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free_page_table (t, idx)
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static unsigned make_entry_lo (kPage *page, bool readonly):
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if !page->frame:
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return 0
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unsigned flags
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if page->flags & Kernel::Page::UNCACHED:
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flags = 0x10 | 0x2
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else:
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flags = 0x18 | 0x2
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if !readonly:
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flags |= 0x4
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return ((page->frame & ~0x80000000) >> 6) | flags
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bool kMemory_arch_map (kMemory *mem, kPage *page, unsigned address, bool readonly):
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if address >= 0x80000000:
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panic (0x32134293, "trying to map to kernel address")
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return false
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address &= PAGE_MASK
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if !mem->arch.directory:
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mem->arch.directory = (unsigned **)mem->zalloc ()
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if !mem->arch.directory:
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return false
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mem->arch.shadow = (arch_page_table **)mem->zalloc ()
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if !mem->arch.shadow:
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mem->zfree ((unsigned)mem->arch.directory)
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mem->arch.directory = NULL
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return false
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unsigned *table = mem->arch.directory[address >> 21]
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arch_page_table *t = mem->arch.shadow[address >> 21]
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if !table:
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table = (unsigned *)mem->zalloc ()
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if !table:
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if !mem->arch.first_page_table:
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mem->zfree ((unsigned)mem->arch.directory)
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mem->zfree ((unsigned)mem->arch.shadow)
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mem->arch.directory = NULL
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mem->arch.shadow = NULL
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return false
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t = alloc_page_table (mem)
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if !t:
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mem->zfree ((unsigned)table)
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if !mem->arch.first_page_table:
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mem->zfree ((unsigned)mem->arch.directory)
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mem->zfree ((unsigned)mem->arch.shadow)
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mem->arch.directory = NULL
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mem->arch.shadow = NULL
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return false
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mem->arch.directory[address >> 21] = table
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mem->arch.shadow[address >> 21] = t
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arch_page *p = alloc_page (mem, t)
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if !p:
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if !t->first_page:
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// This automatically cleans up the rest.
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free_page_table (t, address >> 21)
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return false
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unsigned idx = (address >> 12) & ((1 << 9) - 1)
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if table[idx]:
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mem->unmap ((kPage *)table[idx + 0x200], address)
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table[idx] = make_entry_lo (page, readonly)
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table[idx + 0x200] = (unsigned)p
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p->mapping = address + readonly
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p->page = page
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p->next_mapped = page->arch.first_mapped
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if p->next_mapped:
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p->next_mapped->prev_mapped = p
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page->arch.first_mapped = p
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return true
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void kMemory_arch_unmap (kMemory *mem, kPage *page, unsigned address):
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unsigned didx = address >> 21
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unsigned tidx = (address >> 12) & ((1 << 9) - 1)
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unsigned *table = mem->arch.directory[didx]
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arch_page_table *t = mem->arch.shadow[didx]
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table[tidx] = 0
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arch_page *p = (arch_page *)table[tidx + 0x200]
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table[tidx + 0x200] = 0
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free_page (t, p)
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kPage *kMemory_arch_get_mapping (kMemory *mem, unsigned address, bool *readonly):
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if address >= 0x80000000:
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return NULL
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unsigned *table = mem->arch.directory[address >> 21]
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unsigned idx = (address >> 12) & ((1 << 9) - 1)
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arch_page *page = (arch_page *)table[idx + 0x200]
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if readonly:
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*readonly = !(table[idx] & 4)
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return page->page
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void kPage_arch_update_mapping (kPage *page):
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if !page->arch.first_mapped:
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return
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kMemory *as = page->address_space
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unsigned target = make_entry_lo (page, page->flags & Kernel::Page::READONLY)
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for arch_page *p = page->arch.first_mapped; p; p = p->next_mapped:
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unsigned de = p->mapping >> 21
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unsigned te = (p->mapping >> 12) & ((1 << 9) - 1)
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bool readonly = p->mapping & 1
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unsigned t
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if readonly:
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t = target & ~0x4
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else:
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t = target
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as->arch.directory[de][te] = t
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tlb_reset (p->mapping & ~1, as->arch.asid, t)
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void arch_register_interrupt (unsigned num, kReceiver *r):
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arch_interrupt_receiver[num] = r
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// And enable or disable the interrupt.
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if r:
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intc_unmask_irq (num)
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else:
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intc_mask_irq (num)
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