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173 | jermar | 1 | /* |
2 | * Copyright (C) 2005 Jakub Jermar |
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3 | * All rights reserved. |
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4 | * |
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5 | * Redistribution and use in source and binary forms, with or without |
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6 | * modification, are permitted provided that the following conditions |
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7 | * are met: |
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8 | * |
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9 | * - Redistributions of source code must retain the above copyright |
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10 | * notice, this list of conditions and the following disclaimer. |
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11 | * - Redistributions in binary form must reproduce the above copyright |
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12 | * notice, this list of conditions and the following disclaimer in the |
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13 | * documentation and/or other materials provided with the distribution. |
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14 | * - The name of the author may not be used to endorse or promote products |
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15 | * derived from this software without specific prior written permission. |
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16 | * |
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17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR |
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18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES |
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19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. |
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20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, |
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21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT |
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22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
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23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY |
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24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
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25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF |
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26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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27 | */ |
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28 | |||
1888 | jermar | 29 | /** @addtogroup amd64 |
1702 | cejka | 30 | * @{ |
31 | */ |
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32 | /** @file |
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33 | */ |
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34 | |||
1888 | jermar | 35 | #ifndef KERN_amd64_ASM_H_ |
36 | #define KERN_amd64_ASM_H_ |
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173 | jermar | 37 | |
1186 | jermar | 38 | #include <arch/pm.h> |
173 | jermar | 39 | #include <arch/types.h> |
40 | #include <config.h> |
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41 | |||
1780 | jermar | 42 | extern void asm_delay_loop(uint32_t t); |
43 | extern void asm_fake_loop(uint32_t t); |
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200 | palkovsky | 44 | |
253 | jermar | 45 | /** Return base address of current stack. |
46 | * |
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47 | * Return the base address of the current stack. |
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48 | * The stack is assumed to be STACK_SIZE bytes long. |
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49 | * The stack must start on page boundary. |
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50 | */ |
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1780 | jermar | 51 | static inline uintptr_t get_stack_base(void) |
173 | jermar | 52 | { |
1780 | jermar | 53 | uintptr_t v; |
226 | palkovsky | 54 | |
1780 | jermar | 55 | __asm__ volatile ("andq %%rsp, %0\n" : "=r" (v) : "0" (~((uint64_t)STACK_SIZE-1))); |
226 | palkovsky | 56 | |
57 | return v; |
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173 | jermar | 58 | } |
59 | |||
348 | jermar | 60 | static inline void cpu_sleep(void) { __asm__ volatile ("hlt\n"); }; |
61 | static inline void cpu_halt(void) { __asm__ volatile ("hlt\n"); }; |
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197 | palkovsky | 62 | |
200 | palkovsky | 63 | |
625 | palkovsky | 64 | /** Byte from port |
65 | * |
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66 | * Get byte from port |
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67 | * |
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68 | * @param port Port to read from |
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69 | * @return Value read |
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70 | */ |
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1780 | jermar | 71 | static inline uint8_t inb(uint16_t port) { uint8_t val; __asm__ volatile ("inb %w1, %b0 \n" : "=a" (val) : "d" (port) ); return val; } |
200 | palkovsky | 72 | |
625 | palkovsky | 73 | /** Byte to port |
74 | * |
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75 | * Output byte to port |
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76 | * |
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77 | * @param port Port to write to |
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78 | * @param val Value to write |
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79 | */ |
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1780 | jermar | 80 | static inline void outb(uint16_t port, uint8_t val) { __asm__ volatile ("outb %b0, %w1\n" : : "a" (val), "d" (port) ); } |
200 | palkovsky | 81 | |
806 | palkovsky | 82 | /** Swap Hidden part of GS register with visible one */ |
83 | static inline void swapgs(void) { __asm__ volatile("swapgs"); } |
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84 | |||
413 | jermar | 85 | /** Enable interrupts. |
200 | palkovsky | 86 | * |
87 | * Enable interrupts and return previous |
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88 | * value of EFLAGS. |
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413 | jermar | 89 | * |
90 | * @return Old interrupt priority level. |
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200 | palkovsky | 91 | */ |
413 | jermar | 92 | static inline ipl_t interrupts_enable(void) { |
93 | ipl_t v; |
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200 | palkovsky | 94 | __asm__ volatile ( |
95 | "pushfq\n" |
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96 | "popq %0\n" |
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97 | "sti\n" |
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98 | : "=r" (v) |
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99 | ); |
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100 | return v; |
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101 | } |
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102 | |||
413 | jermar | 103 | /** Disable interrupts. |
200 | palkovsky | 104 | * |
105 | * Disable interrupts and return previous |
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106 | * value of EFLAGS. |
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413 | jermar | 107 | * |
108 | * @return Old interrupt priority level. |
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200 | palkovsky | 109 | */ |
413 | jermar | 110 | static inline ipl_t interrupts_disable(void) { |
111 | ipl_t v; |
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200 | palkovsky | 112 | __asm__ volatile ( |
113 | "pushfq\n" |
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114 | "popq %0\n" |
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115 | "cli\n" |
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116 | : "=r" (v) |
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117 | ); |
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118 | return v; |
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119 | } |
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120 | |||
413 | jermar | 121 | /** Restore interrupt priority level. |
200 | palkovsky | 122 | * |
123 | * Restore EFLAGS. |
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413 | jermar | 124 | * |
125 | * @param ipl Saved interrupt priority level. |
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200 | palkovsky | 126 | */ |
413 | jermar | 127 | static inline void interrupts_restore(ipl_t ipl) { |
200 | palkovsky | 128 | __asm__ volatile ( |
129 | "pushq %0\n" |
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130 | "popfq\n" |
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413 | jermar | 131 | : : "r" (ipl) |
200 | palkovsky | 132 | ); |
133 | } |
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134 | |||
413 | jermar | 135 | /** Return interrupt priority level. |
206 | palkovsky | 136 | * |
137 | * Return EFLAFS. |
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413 | jermar | 138 | * |
139 | * @return Current interrupt priority level. |
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206 | palkovsky | 140 | */ |
413 | jermar | 141 | static inline ipl_t interrupts_read(void) { |
142 | ipl_t v; |
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206 | palkovsky | 143 | __asm__ volatile ( |
144 | "pushfq\n" |
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145 | "popq %0\n" |
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146 | : "=r" (v) |
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147 | ); |
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148 | return v; |
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149 | } |
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200 | palkovsky | 150 | |
803 | palkovsky | 151 | /** Write to MSR */ |
1780 | jermar | 152 | static inline void write_msr(uint32_t msr, uint64_t value) |
803 | palkovsky | 153 | { |
154 | __asm__ volatile ( |
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155 | "wrmsr;" : : "c" (msr), |
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1780 | jermar | 156 | "a" ((uint32_t)(value)), |
157 | "d" ((uint32_t)(value >> 32)) |
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803 | palkovsky | 158 | ); |
159 | } |
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219 | palkovsky | 160 | |
1780 | jermar | 161 | static inline unative_t read_msr(uint32_t msr) |
803 | palkovsky | 162 | { |
1780 | jermar | 163 | uint32_t ax, dx; |
803 | palkovsky | 164 | |
165 | __asm__ volatile ( |
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166 | "rdmsr;" : "=a"(ax), "=d"(dx) : "c" (msr) |
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167 | ); |
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1780 | jermar | 168 | return ((uint64_t)dx << 32) | ax; |
803 | palkovsky | 169 | } |
170 | |||
171 | |||
268 | palkovsky | 172 | /** Enable local APIC |
173 | * |
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174 | * Enable local APIC in MSR. |
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175 | */ |
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176 | static inline void enable_l_apic_in_msr() |
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177 | { |
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178 | __asm__ volatile ( |
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348 | jermar | 179 | "movl $0x1b, %%ecx\n" |
180 | "rdmsr\n" |
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181 | "orl $(1<<11),%%eax\n" |
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182 | "orl $(0xfee00000),%%eax\n" |
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183 | "wrmsr\n" |
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268 | palkovsky | 184 | : |
185 | : |
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186 | :"%eax","%ecx","%edx" |
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187 | ); |
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188 | } |
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189 | |||
1780 | jermar | 190 | static inline uintptr_t * get_ip() |
581 | palkovsky | 191 | { |
1780 | jermar | 192 | uintptr_t *ip; |
581 | palkovsky | 193 | |
194 | __asm__ volatile ( |
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195 | "mov %%rip, %0" |
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196 | : "=r" (ip) |
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197 | ); |
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198 | return ip; |
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199 | } |
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200 | |||
597 | jermar | 201 | /** Invalidate TLB Entry. |
202 | * |
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203 | * @param addr Address on a page whose TLB entry is to be invalidated. |
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204 | */ |
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1780 | jermar | 205 | static inline void invlpg(uintptr_t addr) |
597 | jermar | 206 | { |
1780 | jermar | 207 | __asm__ volatile ("invlpg %0\n" :: "m" (*((unative_t *)addr))); |
597 | jermar | 208 | } |
581 | palkovsky | 209 | |
1186 | jermar | 210 | /** Load GDTR register from memory. |
211 | * |
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212 | * @param gdtr_reg Address of memory from where to load GDTR. |
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213 | */ |
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214 | static inline void gdtr_load(struct ptr_16_64 *gdtr_reg) |
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215 | { |
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1251 | jermar | 216 | __asm__ volatile ("lgdtq %0\n" : : "m" (*gdtr_reg)); |
1186 | jermar | 217 | } |
218 | |||
219 | /** Store GDTR register to memory. |
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220 | * |
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221 | * @param gdtr_reg Address of memory to where to load GDTR. |
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222 | */ |
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223 | static inline void gdtr_store(struct ptr_16_64 *gdtr_reg) |
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224 | { |
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1251 | jermar | 225 | __asm__ volatile ("sgdtq %0\n" : : "m" (*gdtr_reg)); |
1186 | jermar | 226 | } |
227 | |||
228 | /** Load IDTR register from memory. |
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229 | * |
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230 | * @param idtr_reg Address of memory from where to load IDTR. |
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231 | */ |
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232 | static inline void idtr_load(struct ptr_16_64 *idtr_reg) |
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233 | { |
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1251 | jermar | 234 | __asm__ volatile ("lidtq %0\n" : : "m" (*idtr_reg)); |
1186 | jermar | 235 | } |
236 | |||
237 | /** Load TR from descriptor table. |
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238 | * |
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239 | * @param sel Selector specifying descriptor of TSS segment. |
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240 | */ |
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1780 | jermar | 241 | static inline void tr_load(uint16_t sel) |
1186 | jermar | 242 | { |
243 | __asm__ volatile ("ltr %0" : : "r" (sel)); |
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244 | } |
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245 | |||
1780 | jermar | 246 | #define GEN_READ_REG(reg) static inline unative_t read_ ##reg (void) \ |
1072 | palkovsky | 247 | { \ |
1780 | jermar | 248 | unative_t res; \ |
1072 | palkovsky | 249 | __asm__ volatile ("movq %%" #reg ", %0" : "=r" (res) ); \ |
250 | return res; \ |
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251 | } |
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252 | |||
1780 | jermar | 253 | #define GEN_WRITE_REG(reg) static inline void write_ ##reg (unative_t regn) \ |
1072 | palkovsky | 254 | { \ |
255 | __asm__ volatile ("movq %0, %%" #reg : : "r" (regn)); \ |
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256 | } |
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257 | |||
258 | GEN_READ_REG(cr0); |
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259 | GEN_READ_REG(cr2); |
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260 | GEN_READ_REG(cr3); |
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261 | GEN_WRITE_REG(cr3); |
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262 | |||
263 | GEN_READ_REG(dr0); |
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264 | GEN_READ_REG(dr1); |
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265 | GEN_READ_REG(dr2); |
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266 | GEN_READ_REG(dr3); |
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267 | GEN_READ_REG(dr6); |
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268 | GEN_READ_REG(dr7); |
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269 | |||
270 | GEN_WRITE_REG(dr0); |
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271 | GEN_WRITE_REG(dr1); |
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272 | GEN_WRITE_REG(dr2); |
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273 | GEN_WRITE_REG(dr3); |
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274 | GEN_WRITE_REG(dr6); |
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275 | GEN_WRITE_REG(dr7); |
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276 | |||
206 | palkovsky | 277 | extern size_t interrupt_handler_size; |
278 | extern void interrupt_handlers(void); |
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279 | |||
173 | jermar | 280 | #endif |
1702 | cejka | 281 | |
1888 | jermar | 282 | /** @} |
1702 | cejka | 283 | */ |