2010-08-24 00:55:51 +03:00
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#pypp 0
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// Iris: micro-kernel for a capability-based operating system.
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// source/boot.ccp: Boot into another kernel.
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// Copyright 2010 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 <iris.hh>
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#include <devices.hh>
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extern "C":
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extern unsigned pre_code, pre_end, post_code, post_end
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struct args_t:
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unsigned load
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unsigned size
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unsigned entry
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unsigned source
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Iris::Num start ():
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unsigned *loader_addr = (unsigned *)0x15000
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unsigned *page_addr = (unsigned *)0x16000
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unsigned *tmp_addr = (unsigned *)0x17000
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Iris::Boot cap = Iris::my_receiver.create_capability (0)
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Iris::my_parent.provide_capability <Iris::Boot> (cap.copy ())
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Iris::free_cap (cap)
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Iris::my_parent.init_done ()
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while true:
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Iris::wait ()
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switch Iris::recv.data[0].l:
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case Iris::Boot::BOOT:
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2010-09-02 00:27:14 +03:00
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Iris::Block code = Iris::get_arg ()
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2010-08-24 00:55:51 +03:00
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unsigned load = Iris::recv.data[1].l
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unsigned entry = Iris::recv.data[1].h
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Iris::Num lsize = code.get_size ()
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if lsize.h != 0:
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Iris::panic (lsize.h, "string to boot is too large to be loaded")
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unsigned size = lsize.l
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unsigned pages = ((size + ~PAGE_MASK) >> PAGE_BITS) + 1
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unsigned phys = Iris::my_memory.alloc_range (pages)
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if phys & ~PAGE_MASK:
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Iris::panic (size, "unable to allocate space for string to load")
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unsigned target, offset
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if phys < (load & ~0xa0000000):
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Iris::debug ("pre-loading\n")
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Iris::Page pre = Iris::my_memory.create_page ()
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pre.alloc_physical (phys, true, true)
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Iris::my_memory.map (pre, (unsigned)loader_addr)
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for unsigned i = 0; i < &pre_end - &pre_code; ++i:
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loader_addr[i] = (&pre_code)[i]
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target = phys
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offset = 1
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else:
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Iris::debug ("post-loading\n")
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Iris::Page post = Iris::my_memory.create_page ()
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post.alloc_physical (phys + ((pages - 1) << PAGE_BITS), true, true)
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Iris::my_memory.map (post, (unsigned)loader_addr)
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for unsigned i = 0; i < &post_end - &post_code; ++i:
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loader_addr[i] = (&post_code)[i]
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target = phys + ((pages - 1) << PAGE_BITS)
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offset = 0
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Iris::Page tmp = Iris::my_memory.create_page ()
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tmp.set_flags (Iris::Page::PAYING | Iris::Page::FRAME)
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Iris::my_memory.map (tmp, (unsigned)tmp_addr)
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for unsigned i = 0; i < pages - 1; ++i:
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Iris::Page page = Iris::my_memory.create_page ()
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page.alloc_physical (phys + ((i + offset) << PAGE_BITS), true, true)
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Iris::my_memory.map (page, (unsigned)page_addr)
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code.get_block (i << PAGE_BITS, PAGE_SIZE, 0, tmp)
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for unsigned t = 0; t < PAGE_SIZE / 4; ++t:
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page_addr[t] = tmp_addr[t]
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args_t *args = (args_t *)((unsigned)loader_addr + PAGE_SIZE - sizeof (args_t))
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unsigned phys_args = target + PAGE_SIZE - sizeof (args_t)
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args->load = load
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args->entry = entry
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args->size = size
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args->source = phys + (offset << PAGE_BITS) | 0x80000000
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Iris::debug ("booting into: %x+%x->%x@%x (%x, %x)\n", args->source, args->size, args->load, args->entry, args, phys_args)
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// Everything is set up; jump to the loader.
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Iris::boot (target | 0x80000000, phys_args | 0x80000000)
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Iris::panic (0, "Iris::boot should not return, but it does")
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default:
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Iris::panic (Iris::recv.data[0].l, "invalid commend received on boot capability")
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asm volatile ("\t.set noreorder\n"
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"\t.globl pre_code, pre_end, post_code, post_end\n"
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"\t.text\n"
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"pre_code:\n"
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"\tlw $t0, 0($a0)\n" // t0 is the load address
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"\tlw $t1, 4($a0)\n" // t1 is the size
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"\tlw $t9, 8($a0)\n" // t9 is the entry point
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"\tlw $t2, 12($a0)\n" // t2 is the source of the loaded image
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"\tadd $t0, $t0, $t1\n" // t0 is the end of the load region
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"\tadd $t2, $t2, $t1\n" // t2 is the end of the source
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"1:\n"
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"\tlw $t3, -4($t2)\n"
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"\tsw $t3, -4($t0)\n"
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"\taddiu $t2, $t2, -4\n"
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"\taddiu $t1, $t1, -4\n"
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"\tbnez $t1, 1b\n"
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"\taddiu $t0, $t0, -4\n"
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// Done copying
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"\tjr $t9\n"
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"\tnop\n"
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"pre_end:\n"
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"\n"
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"post_code:\n"
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"\tlw $t0, 0($a0)\n" // t0 is the load address
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"\tlw $t1, 4($a0)\n" // t1 is the size
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"\tlw $t9, 8($a0)\n" // t9 is the entry point
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"\tlw $t2, 12($a0)\n" // t2 is the source of the loaded image
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"1:\n"
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"\tlw $t3, 0($t2)\n"
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"\tsw $t3, 0($t0)\n"
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"\taddiu $t2, $t2, 4\n"
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"\taddiu $t1, $t1, -4\n"
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"\tbnez $t1, 1b\n"
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"\taddiu $t0, $t0, 4\n"
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// Done copying
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"\tjr $t9\n"
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"\tnop\n"
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"post_end:\n"
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"\n"
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"\t.set reorder\n")
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