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Stefan Roesea8856e32007-02-20 10:57:08 +01001/*
2 * (C) Copyright 2007
3 * Stefan Roese, DENX Software Engineering, sr@denx.de.
4 *
5 * Copyright (C) 2002 Scott McNutt <smcnutt@artesyncp.com>
6 *
7 * See file CREDITS for list of people who contributed to this
8 * project.
9 *
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public License as
12 * published by the Free Software Foundation; either version 2 of
13 * the License, or (at your option) any later version.
14 *
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
23 * MA 02111-1307 USA
24 */
25
26#include <ppc_asm.tmpl>
27#include <config.h>
28#include <asm-ppc/mmu.h>
29
30/**************************************************************************
31 * TLB TABLE
32 *
33 * This table is used by the cpu boot code to setup the initial tlb
34 * entries. Rather than make broad assumptions in the cpu source tree,
35 * this table lets each board set things up however they like.
36 *
37 * Pointer to the table is returned in r1
38 *
39 *************************************************************************/
40
41 .section .bootpg,"ax"
42
43/**************************************************************************
44 * TLB table for revA
45 *************************************************************************/
46 .globl tlbtabA
47tlbtabA:
48 tlbtab_start
Stefan Roese3f7b8612007-03-08 10:07:18 +010049
50 /*
51 * BOOT_CS (FLASH) must be first. Before relocation SA_I can be off to use the
52 * speed up boot process. It is patched after relocation to enable SA_I
53 */
Stefan Roesea8856e32007-02-20 10:57:08 +010054 tlbentry(0xff000000, SZ_16M, 0xff000000, 4, AC_R|AC_W|AC_X|SA_G)
55
56 /*
57 * TLB entries for SDRAM are not needed on this platform.
58 * They are dynamically generated in the SPD DDR(2) detection
59 * routine.
60 */
61
62 tlbentry(CFG_ISRAM_BASE, SZ_256K, 0x00000000, 4, AC_R|AC_W|AC_X|SA_I)
63 tlbentry(CFG_PERIPHERAL_BASE, SZ_4K, 0xF0000000, 4, AC_R|AC_W|SA_G|SA_I)
64
65 tlbentry(CFG_PCI_BASE, SZ_256M, 0x00000000, 0xC, AC_R|AC_W|SA_G|SA_I)
66 tlbentry(CFG_PCI_MEMBASE, SZ_256M, 0x10000000, 0xC, AC_R|AC_W|SA_G|SA_I)
67 tlbentry(CFG_PCIE_MEMBASE, SZ_256M, 0xB0000000, 0xD, AC_R|AC_W|SA_G|SA_I)
68 tlbentry(CFG_PCIE_BASE, SZ_16K, 0x20000000, 0xC, AC_R|AC_W|SA_G|SA_I)
69
70 tlbentry(CFG_PCIE0_CFGBASE, SZ_1K, 0x40000000, 0xC, AC_R|AC_W|SA_G|SA_I)
71 tlbentry(CFG_PCIE1_CFGBASE, SZ_1K, 0x80000000, 0xC, AC_R|AC_W|SA_G|SA_I)
72 tlbentry(CFG_PCIE2_CFGBASE, SZ_1K, 0xC0000000, 0xC, AC_R|AC_W|SA_G|SA_I)
73 tlbentry(CFG_PCIE0_XCFGBASE, SZ_1K, 0x50000000, 0xC, AC_R|AC_W|SA_G|SA_I)
74 tlbentry(CFG_PCIE1_XCFGBASE, SZ_1K, 0x90000000, 0xC, AC_R|AC_W|SA_G|SA_I)
75 tlbentry(CFG_PCIE2_XCFGBASE, SZ_1K, 0xD0000000, 0xC, AC_R|AC_W|SA_G|SA_I)
76 tlbtab_end
77
78/**************************************************************************
79 * TLB table for revB
80 *
81 * Notice: revB of the 440SPe chip is very strict about PLB real addresses
82 * and ranges to be mapped for config space: it seems to only work with
83 * d_nnnn_nnnn range (hangs the core upon config transaction attempts when
84 * set otherwise) while revA uses c_nnnn_nnnn.
85 *************************************************************************/
86 .globl tlbtabB
87tlbtabB:
88 tlbtab_start
Stefan Roese3f7b8612007-03-08 10:07:18 +010089
90 /*
91 * BOOT_CS (FLASH) must be first. Before relocation SA_I can be off to use the
92 * speed up boot process. It is patched after relocation to enable SA_I
93 */
Stefan Roesea8856e32007-02-20 10:57:08 +010094 tlbentry(0xff000000, SZ_16M, 0xff000000, 4, AC_R|AC_W|AC_X|SA_G)
95
96 /*
97 * TLB entries for SDRAM are not needed on this platform.
98 * They are dynamically generated in the SPD DDR(2) detection
99 * routine.
100 */
101
102 tlbentry(CFG_ISRAM_BASE, SZ_256K, 0x00000000, 4, AC_R|AC_W|AC_X|SA_I)
103
104 tlbentry(CFG_PERIPHERAL_BASE, SZ_4K, 0xF0000000, 4, AC_R|AC_W|SA_G|SA_I)
105
Stefan Roesee01d43a2007-04-02 10:09:30 +0200106 tlbentry(CFG_ACE_BASE, SZ_1K, CFG_ACE_BASE, 4,AC_R|AC_W|SA_G|SA_I)
Stefan Roesea8856e32007-02-20 10:57:08 +0100107
108 tlbentry(CFG_PCI_BASE, SZ_256M, 0x00000000, 0xC, AC_R|AC_W|SA_G|SA_I)
109 tlbentry(CFG_PCI_MEMBASE, SZ_256M, 0x10000000, 0xC, AC_R|AC_W|SA_G|SA_I)
110 tlbentry(CFG_PCIE_MEMBASE, SZ_256M, 0xB0000000, 0xD, AC_R|AC_W|SA_G|SA_I)
111
112 tlbentry(CFG_PCIE0_CFGBASE, SZ_1K, 0x00100000, 0xD, AC_R|AC_W|SA_G|SA_I)
113 tlbentry(CFG_PCIE1_CFGBASE, SZ_1K, 0x20100000, 0xD, AC_R|AC_W|SA_G|SA_I)
114 tlbentry(CFG_PCIE2_CFGBASE, SZ_1K, 0x40100000, 0xD, AC_R|AC_W|SA_G|SA_I)
115 tlbentry(CFG_PCIE0_XCFGBASE, SZ_1K, 0x10000000, 0xD, AC_R|AC_W|SA_G|SA_I)
116 tlbentry(CFG_PCIE1_XCFGBASE, SZ_1K, 0x30000000, 0xD, AC_R|AC_W|SA_G|SA_I)
117 tlbentry(CFG_PCIE2_XCFGBASE, SZ_1K, 0x50000000, 0xD, AC_R|AC_W|SA_G|SA_I)
118 tlbtab_end