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1 | #------------------------------------------------------------------------------\r |
2 | #\r | |
3 | # Copyright (c) 2014, Intel Corporation. All rights reserved.<BR>\r | |
4 | # This program and the accompanying materials\r | |
5 | # are licensed and made available under the terms and conditions of the BSD License\r | |
6 | # which accompanies this distribution. The full text of the license may be found at\r | |
7 | # http://opensource.org/licenses/bsd-license.php.\r | |
8 | #\r | |
9 | # THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r | |
10 | # WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r | |
11 | #\r | |
12 | # Module Name:\r | |
13 | #\r | |
14 | # PeiCoreEntry.S\r | |
15 | #\r | |
16 | # Abstract:\r | |
17 | #\r | |
18 | # Find and call SecStartup\r | |
19 | #\r | |
20 | #------------------------------------------------------------------------------\r | |
21 | \r | |
22 | ASM_GLOBAL ASM_PFX(CallPeiCoreEntryPoint)\r | |
23 | ASM_PFX(CallPeiCoreEntryPoint):\r | |
24 | #\r | |
25 | # Obtain the hob list pointer\r | |
26 | #\r | |
27 | movl 0x4(%esp), %eax\r | |
28 | #\r | |
29 | # Obtain the stack information\r | |
30 | # ECX: start of range\r | |
31 | # EDX: end of range\r | |
32 | #\r | |
33 | movl 0x8(%esp), %ecx\r | |
34 | movl 0xC(%esp), %edx\r | |
35 | \r | |
36 | #\r | |
37 | # Platform init\r | |
38 | #\r | |
39 | pushal\r | |
40 | pushl %edx\r | |
41 | pushl %ecx\r | |
42 | pushl %eax\r | |
43 | call ASM_PFX(PlatformInit)\r | |
44 | popl %eax\r | |
45 | popl %eax\r | |
46 | popl %eax\r | |
47 | popal\r | |
48 | \r | |
49 | #\r | |
50 | # Set stack top pointer\r | |
51 | #\r | |
52 | movl %edx, %esp\r | |
53 | \r | |
54 | #\r | |
55 | # Push the hob list pointer\r | |
56 | #\r | |
57 | pushl %eax\r | |
58 | \r | |
59 | #\r | |
60 | # Save the value\r | |
61 | # ECX: start of range\r | |
62 | # EDX: end of range\r | |
63 | #\r | |
64 | movl %esp, %ebp\r | |
65 | pushl %ecx\r | |
66 | pushl %edx\r | |
67 | \r | |
68 | #\r | |
69 | # Push processor count to stack first, then BIST status (AP then BSP)\r | |
70 | #\r | |
71 | movl $1, %eax\r | |
72 | cpuid\r | |
73 | shr $16, %ebx\r | |
74 | andl $0x000000FF, %ebx\r | |
75 | cmp $1, %bl\r | |
76 | jae PushProcessorCount\r | |
77 | \r | |
78 | #\r | |
79 | # Some processors report 0 logical processors. Effectively 0 = 1.\r | |
80 | # So we fix up the processor count\r | |
81 | #\r | |
82 | inc %ebx\r | |
83 | \r | |
84 | PushProcessorCount:\r | |
85 | pushl %ebx\r | |
86 | \r | |
87 | #\r | |
88 | # We need to implement a long-term solution for BIST capture. For now, we just copy BSP BIST\r | |
89 | # for all processor threads\r | |
90 | #\r | |
91 | xorl %ecx, %ecx\r | |
92 | movb %bl, %cl\r | |
93 | PushBist:\r | |
94 | movd %mm0, %eax\r | |
95 | pushl %eax\r | |
96 | loop PushBist\r | |
97 | \r | |
98 | # Save Time-Stamp Counter\r | |
99 | movd %mm5, %eax\r | |
100 | pushl %eax\r | |
101 | \r | |
102 | movd %mm6, %eax\r | |
103 | pushl %eax\r | |
104 | \r | |
105 | #\r | |
106 | # Pass entry point of the PEI core\r | |
107 | #\r | |
108 | movl $0xFFFFFFE0, %edi\r | |
109 | pushl %ds:(%edi)\r | |
110 | \r | |
111 | #\r | |
112 | # Pass BFV into the PEI Core\r | |
113 | #\r | |
114 | movl $0xFFFFFFFC, %edi\r | |
115 | pushl %ds:(%edi)\r | |
116 | \r | |
117 | #\r | |
118 | # Pass stack size into the PEI Core\r | |
119 | #\r | |
120 | movl -4(%ebp), %ecx\r | |
121 | movl -8(%ebp), %edx\r | |
122 | pushl %ecx # RamBase\r | |
123 | \r | |
124 | subl %ecx, %edx\r | |
125 | pushl %edx # RamSize\r | |
126 | \r | |
127 | #\r | |
128 | # Pass Control into the PEI Core\r | |
129 | #\r | |
130 | call ASM_PFX(SecStartup)\r |