.. | .. |
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| 1 | +// SPDX-License-Identifier: GPL-2.0-only |
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1 | 2 | /* |
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2 | 3 | * Copyright (c) 2009, Microsoft Corporation. |
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3 | | - * |
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4 | | - * This program is free software; you can redistribute it and/or modify it |
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5 | | - * under the terms and conditions of the GNU General Public License, |
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6 | | - * version 2, as published by the Free Software Foundation. |
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7 | | - * |
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8 | | - * This program is distributed in the hope it will be useful, but WITHOUT |
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9 | | - * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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10 | | - * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for |
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11 | | - * more details. |
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12 | | - * |
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13 | | - * You should have received a copy of the GNU General Public License along with |
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14 | | - * this program; if not, write to the Free Software Foundation, Inc., 59 Temple |
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15 | | - * Place - Suite 330, Boston, MA 02111-1307 USA. |
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16 | 4 | * |
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17 | 5 | * Authors: |
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18 | 6 | * Haiyang Zhang <haiyangz@microsoft.com> |
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19 | 7 | * Hank Janssen <hjanssen@microsoft.com> |
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20 | | - * |
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21 | 8 | */ |
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22 | 9 | #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt |
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23 | 10 | |
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.. | .. |
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29 | 16 | #include <linux/version.h> |
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30 | 17 | #include <linux/random.h> |
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31 | 18 | #include <linux/clockchips.h> |
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| 19 | +#include <clocksource/hyperv_timer.h> |
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32 | 20 | #include <asm/mshyperv.h> |
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33 | 21 | #include "hyperv_vmbus.h" |
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34 | 22 | |
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35 | 23 | /* The one and only */ |
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36 | | -struct hv_context hv_context = { |
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37 | | - .synic_initialized = false, |
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38 | | -}; |
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39 | | - |
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40 | | -/* |
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41 | | - * If false, we're using the old mechanism for stimer0 interrupts |
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42 | | - * where it sends a VMbus message when it expires. The old |
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43 | | - * mechanism is used when running on older versions of Hyper-V |
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44 | | - * that don't support Direct Mode. While Hyper-V provides |
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45 | | - * four stimer's per CPU, Linux uses only stimer0. |
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46 | | - */ |
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47 | | -static bool direct_mode_enabled; |
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48 | | -static int stimer0_irq; |
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49 | | -static int stimer0_vector; |
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50 | | - |
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51 | | -#define HV_TIMER_FREQUENCY (10 * 1000 * 1000) /* 100ns period */ |
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52 | | -#define HV_MAX_MAX_DELTA_TICKS 0xffffffff |
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53 | | -#define HV_MIN_DELTA_TICKS 1 |
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| 24 | +struct hv_context hv_context; |
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54 | 25 | |
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55 | 26 | /* |
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56 | 27 | * hv_init - Main initialization routine. |
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.. | .. |
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62 | 33 | hv_context.cpu_context = alloc_percpu(struct hv_per_cpu_context); |
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63 | 34 | if (!hv_context.cpu_context) |
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64 | 35 | return -ENOMEM; |
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65 | | - |
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66 | | - direct_mode_enabled = ms_hyperv.misc_features & |
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67 | | - HV_STIMER_DIRECT_MODE_AVAILABLE; |
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68 | 36 | return 0; |
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69 | 37 | } |
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70 | 38 | |
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.. | .. |
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103 | 71 | return status & 0xFFFF; |
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104 | 72 | } |
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105 | 73 | |
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106 | | -/* |
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107 | | - * ISR for when stimer0 is operating in Direct Mode. Direct Mode |
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108 | | - * does not use VMbus or any VMbus messages, so process here and not |
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109 | | - * in the VMbus driver code. |
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110 | | - */ |
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111 | | - |
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112 | | -static void hv_stimer0_isr(void) |
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113 | | -{ |
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114 | | - struct hv_per_cpu_context *hv_cpu; |
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115 | | - struct pt_regs *regs = get_irq_regs(); |
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116 | | - u64 ip = regs ? instruction_pointer(regs) : 0; |
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117 | | - |
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118 | | - hv_cpu = this_cpu_ptr(hv_context.cpu_context); |
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119 | | - hv_cpu->clk_evt->event_handler(hv_cpu->clk_evt); |
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120 | | - add_interrupt_randomness(stimer0_vector, 0, ip); |
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121 | | -} |
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122 | | - |
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123 | | -static int hv_ce_set_next_event(unsigned long delta, |
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124 | | - struct clock_event_device *evt) |
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125 | | -{ |
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126 | | - u64 current_tick; |
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127 | | - |
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128 | | - WARN_ON(!clockevent_state_oneshot(evt)); |
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129 | | - |
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130 | | - current_tick = hyperv_cs->read(NULL); |
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131 | | - current_tick += delta; |
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132 | | - hv_init_timer(0, current_tick); |
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133 | | - return 0; |
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134 | | -} |
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135 | | - |
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136 | | -static int hv_ce_shutdown(struct clock_event_device *evt) |
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137 | | -{ |
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138 | | - hv_init_timer(0, 0); |
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139 | | - hv_init_timer_config(0, 0); |
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140 | | - if (direct_mode_enabled) |
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141 | | - hv_disable_stimer0_percpu_irq(stimer0_irq); |
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142 | | - |
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143 | | - return 0; |
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144 | | -} |
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145 | | - |
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146 | | -static int hv_ce_set_oneshot(struct clock_event_device *evt) |
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147 | | -{ |
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148 | | - union hv_timer_config timer_cfg; |
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149 | | - |
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150 | | - timer_cfg.as_uint64 = 0; |
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151 | | - timer_cfg.enable = 1; |
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152 | | - timer_cfg.auto_enable = 1; |
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153 | | - if (direct_mode_enabled) { |
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154 | | - /* |
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155 | | - * When it expires, the timer will directly interrupt |
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156 | | - * on the specified hardware vector/IRQ. |
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157 | | - */ |
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158 | | - timer_cfg.direct_mode = 1; |
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159 | | - timer_cfg.apic_vector = stimer0_vector; |
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160 | | - hv_enable_stimer0_percpu_irq(stimer0_irq); |
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161 | | - } else { |
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162 | | - /* |
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163 | | - * When it expires, the timer will generate a VMbus message, |
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164 | | - * to be handled by the normal VMbus interrupt handler. |
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165 | | - */ |
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166 | | - timer_cfg.direct_mode = 0; |
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167 | | - timer_cfg.sintx = VMBUS_MESSAGE_SINT; |
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168 | | - } |
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169 | | - hv_init_timer_config(0, timer_cfg.as_uint64); |
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170 | | - return 0; |
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171 | | -} |
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172 | | - |
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173 | | -static void hv_init_clockevent_device(struct clock_event_device *dev, int cpu) |
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174 | | -{ |
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175 | | - dev->name = "Hyper-V clockevent"; |
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176 | | - dev->features = CLOCK_EVT_FEAT_ONESHOT; |
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177 | | - dev->cpumask = cpumask_of(cpu); |
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178 | | - dev->rating = 1000; |
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179 | | - /* |
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180 | | - * Avoid settint dev->owner = THIS_MODULE deliberately as doing so will |
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181 | | - * result in clockevents_config_and_register() taking additional |
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182 | | - * references to the hv_vmbus module making it impossible to unload. |
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183 | | - */ |
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184 | | - |
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185 | | - dev->set_state_shutdown = hv_ce_shutdown; |
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186 | | - dev->set_state_oneshot = hv_ce_set_oneshot; |
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187 | | - dev->set_next_event = hv_ce_set_next_event; |
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188 | | -} |
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189 | | - |
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190 | | - |
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191 | 74 | int hv_synic_alloc(void) |
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192 | 75 | { |
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193 | 76 | int cpu; |
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.. | .. |
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216 | 99 | tasklet_init(&hv_cpu->msg_dpc, |
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217 | 100 | vmbus_on_msg_dpc, (unsigned long) hv_cpu); |
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218 | 101 | |
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219 | | - hv_cpu->clk_evt = kzalloc(sizeof(struct clock_event_device), |
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220 | | - GFP_KERNEL); |
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221 | | - if (hv_cpu->clk_evt == NULL) { |
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222 | | - pr_err("Unable to allocate clock event device\n"); |
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223 | | - goto err; |
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224 | | - } |
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225 | | - hv_init_clockevent_device(hv_cpu->clk_evt, cpu); |
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226 | | - |
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227 | 102 | hv_cpu->synic_message_page = |
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228 | 103 | (void *)get_zeroed_page(GFP_ATOMIC); |
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229 | 104 | if (hv_cpu->synic_message_page == NULL) { |
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.. | .. |
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242 | 117 | pr_err("Unable to allocate post msg page\n"); |
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243 | 118 | goto err; |
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244 | 119 | } |
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245 | | - |
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246 | | - INIT_LIST_HEAD(&hv_cpu->chan_list); |
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247 | 120 | } |
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248 | | - |
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249 | | - if (direct_mode_enabled && |
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250 | | - hv_setup_stimer0_irq(&stimer0_irq, &stimer0_vector, |
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251 | | - hv_stimer0_isr)) |
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252 | | - goto err; |
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253 | 121 | |
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254 | 122 | return 0; |
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255 | 123 | err: |
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.. | .. |
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269 | 137 | struct hv_per_cpu_context *hv_cpu |
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270 | 138 | = per_cpu_ptr(hv_context.cpu_context, cpu); |
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271 | 139 | |
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272 | | - kfree(hv_cpu->clk_evt); |
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273 | 140 | free_page((unsigned long)hv_cpu->synic_event_page); |
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274 | 141 | free_page((unsigned long)hv_cpu->synic_message_page); |
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275 | 142 | free_page((unsigned long)hv_cpu->post_msg_page); |
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.. | .. |
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285 | 152 | * retrieve the initialized message and event pages. Otherwise, we create and |
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286 | 153 | * initialize the message and event pages. |
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287 | 154 | */ |
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288 | | -int hv_synic_init(unsigned int cpu) |
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| 155 | +void hv_synic_enable_regs(unsigned int cpu) |
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289 | 156 | { |
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290 | 157 | struct hv_per_cpu_context *hv_cpu |
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291 | 158 | = per_cpu_ptr(hv_context.cpu_context, cpu); |
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.. | .. |
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298 | 165 | hv_get_simp(simp.as_uint64); |
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299 | 166 | simp.simp_enabled = 1; |
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300 | 167 | simp.base_simp_gpa = virt_to_phys(hv_cpu->synic_message_page) |
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301 | | - >> PAGE_SHIFT; |
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| 168 | + >> HV_HYP_PAGE_SHIFT; |
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302 | 169 | |
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303 | 170 | hv_set_simp(simp.as_uint64); |
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304 | 171 | |
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.. | .. |
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306 | 173 | hv_get_siefp(siefp.as_uint64); |
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307 | 174 | siefp.siefp_enabled = 1; |
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308 | 175 | siefp.base_siefp_gpa = virt_to_phys(hv_cpu->synic_event_page) |
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309 | | - >> PAGE_SHIFT; |
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| 176 | + >> HV_HYP_PAGE_SHIFT; |
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310 | 177 | |
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311 | 178 | hv_set_siefp(siefp.as_uint64); |
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312 | 179 | |
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313 | 180 | /* Setup the shared SINT. */ |
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314 | 181 | hv_get_synint_state(VMBUS_MESSAGE_SINT, shared_sint.as_uint64); |
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315 | 182 | |
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316 | | - shared_sint.vector = HYPERVISOR_CALLBACK_VECTOR; |
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| 183 | + shared_sint.vector = hv_get_vector(); |
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317 | 184 | shared_sint.masked = false; |
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318 | | - if (ms_hyperv.hints & HV_DEPRECATING_AEOI_RECOMMENDED) |
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319 | | - shared_sint.auto_eoi = false; |
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320 | | - else |
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321 | | - shared_sint.auto_eoi = true; |
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322 | | - |
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| 185 | + shared_sint.auto_eoi = hv_recommend_using_aeoi(); |
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323 | 186 | hv_set_synint_state(VMBUS_MESSAGE_SINT, shared_sint.as_uint64); |
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324 | 187 | |
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325 | 188 | /* Enable the global synic bit */ |
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.. | .. |
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327 | 190 | sctrl.enable = 1; |
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328 | 191 | |
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329 | 192 | hv_set_synic_state(sctrl.as_uint64); |
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330 | | - |
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331 | | - hv_context.synic_initialized = true; |
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332 | | - |
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333 | | - /* |
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334 | | - * Register the per-cpu clockevent source. |
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335 | | - */ |
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336 | | - if (ms_hyperv.features & HV_MSR_SYNTIMER_AVAILABLE) |
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337 | | - clockevents_config_and_register(hv_cpu->clk_evt, |
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338 | | - HV_TIMER_FREQUENCY, |
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339 | | - HV_MIN_DELTA_TICKS, |
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340 | | - HV_MAX_MAX_DELTA_TICKS); |
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341 | | - return 0; |
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342 | 193 | } |
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343 | 194 | |
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344 | | -/* |
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345 | | - * hv_synic_clockevents_cleanup - Cleanup clockevent devices |
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346 | | - */ |
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347 | | -void hv_synic_clockevents_cleanup(void) |
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| 195 | +int hv_synic_init(unsigned int cpu) |
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348 | 196 | { |
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349 | | - int cpu; |
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| 197 | + hv_synic_enable_regs(cpu); |
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350 | 198 | |
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351 | | - if (!(ms_hyperv.features & HV_MSR_SYNTIMER_AVAILABLE)) |
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352 | | - return; |
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| 199 | + hv_stimer_legacy_init(cpu, VMBUS_MESSAGE_SINT); |
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353 | 200 | |
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354 | | - if (direct_mode_enabled) |
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355 | | - hv_remove_stimer0_irq(stimer0_irq); |
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356 | | - |
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357 | | - for_each_present_cpu(cpu) { |
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358 | | - struct hv_per_cpu_context *hv_cpu |
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359 | | - = per_cpu_ptr(hv_context.cpu_context, cpu); |
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360 | | - |
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361 | | - clockevents_unbind_device(hv_cpu->clk_evt, cpu); |
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362 | | - } |
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| 201 | + return 0; |
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363 | 202 | } |
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364 | 203 | |
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365 | 204 | /* |
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366 | 205 | * hv_synic_cleanup - Cleanup routine for hv_synic_init(). |
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367 | 206 | */ |
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368 | | -int hv_synic_cleanup(unsigned int cpu) |
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| 207 | +void hv_synic_disable_regs(unsigned int cpu) |
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369 | 208 | { |
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370 | 209 | union hv_synic_sint shared_sint; |
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371 | 210 | union hv_synic_simp simp; |
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372 | 211 | union hv_synic_siefp siefp; |
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373 | 212 | union hv_synic_scontrol sctrl; |
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374 | | - struct vmbus_channel *channel, *sc; |
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375 | | - bool channel_found = false; |
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376 | | - unsigned long flags; |
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377 | | - |
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378 | | - if (!hv_context.synic_initialized) |
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379 | | - return -EFAULT; |
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380 | | - |
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381 | | - /* |
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382 | | - * Search for channels which are bound to the CPU we're about to |
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383 | | - * cleanup. In case we find one and vmbus is still connected we need to |
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384 | | - * fail, this will effectively prevent CPU offlining. There is no way |
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385 | | - * we can re-bind channels to different CPUs for now. |
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386 | | - */ |
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387 | | - mutex_lock(&vmbus_connection.channel_mutex); |
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388 | | - list_for_each_entry(channel, &vmbus_connection.chn_list, listentry) { |
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389 | | - if (channel->target_cpu == cpu) { |
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390 | | - channel_found = true; |
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391 | | - break; |
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392 | | - } |
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393 | | - spin_lock_irqsave(&channel->lock, flags); |
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394 | | - list_for_each_entry(sc, &channel->sc_list, sc_list) { |
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395 | | - if (sc->target_cpu == cpu) { |
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396 | | - channel_found = true; |
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397 | | - break; |
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398 | | - } |
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399 | | - } |
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400 | | - spin_unlock_irqrestore(&channel->lock, flags); |
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401 | | - if (channel_found) |
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402 | | - break; |
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403 | | - } |
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404 | | - mutex_unlock(&vmbus_connection.channel_mutex); |
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405 | | - |
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406 | | - if (channel_found && vmbus_connection.conn_state == CONNECTED) |
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407 | | - return -EBUSY; |
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408 | | - |
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409 | | - /* Turn off clockevent device */ |
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410 | | - if (ms_hyperv.features & HV_MSR_SYNTIMER_AVAILABLE) { |
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411 | | - struct hv_per_cpu_context *hv_cpu |
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412 | | - = this_cpu_ptr(hv_context.cpu_context); |
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413 | | - |
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414 | | - clockevents_unbind_device(hv_cpu->clk_evt, cpu); |
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415 | | - hv_ce_shutdown(hv_cpu->clk_evt); |
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416 | | - } |
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417 | 213 | |
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418 | 214 | hv_get_synint_state(VMBUS_MESSAGE_SINT, shared_sint.as_uint64); |
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419 | 215 | |
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.. | .. |
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439 | 235 | hv_get_synic_state(sctrl.as_uint64); |
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440 | 236 | sctrl.enable = 0; |
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441 | 237 | hv_set_synic_state(sctrl.as_uint64); |
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| 238 | +} |
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| 239 | + |
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| 240 | +int hv_synic_cleanup(unsigned int cpu) |
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| 241 | +{ |
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| 242 | + struct vmbus_channel *channel, *sc; |
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| 243 | + bool channel_found = false; |
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| 244 | + |
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| 245 | + /* |
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| 246 | + * Hyper-V does not provide a way to change the connect CPU once |
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| 247 | + * it is set; we must prevent the connect CPU from going offline |
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| 248 | + * while the VM is running normally. But in the panic or kexec() |
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| 249 | + * path where the vmbus is already disconnected, the CPU must be |
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| 250 | + * allowed to shut down. |
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| 251 | + */ |
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| 252 | + if (cpu == VMBUS_CONNECT_CPU && |
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| 253 | + vmbus_connection.conn_state == CONNECTED) |
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| 254 | + return -EBUSY; |
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| 255 | + |
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| 256 | + /* |
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| 257 | + * Search for channels which are bound to the CPU we're about to |
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| 258 | + * cleanup. In case we find one and vmbus is still connected, we |
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| 259 | + * fail; this will effectively prevent CPU offlining. |
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| 260 | + * |
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| 261 | + * TODO: Re-bind the channels to different CPUs. |
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| 262 | + */ |
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| 263 | + mutex_lock(&vmbus_connection.channel_mutex); |
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| 264 | + list_for_each_entry(channel, &vmbus_connection.chn_list, listentry) { |
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| 265 | + if (channel->target_cpu == cpu) { |
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| 266 | + channel_found = true; |
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| 267 | + break; |
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| 268 | + } |
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| 269 | + list_for_each_entry(sc, &channel->sc_list, sc_list) { |
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| 270 | + if (sc->target_cpu == cpu) { |
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| 271 | + channel_found = true; |
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| 272 | + break; |
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| 273 | + } |
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| 274 | + } |
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| 275 | + if (channel_found) |
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| 276 | + break; |
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| 277 | + } |
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| 278 | + mutex_unlock(&vmbus_connection.channel_mutex); |
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| 279 | + |
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| 280 | + if (channel_found && vmbus_connection.conn_state == CONNECTED) |
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| 281 | + return -EBUSY; |
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| 282 | + |
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| 283 | + hv_stimer_legacy_cleanup(cpu); |
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| 284 | + |
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| 285 | + hv_synic_disable_regs(cpu); |
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442 | 286 | |
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443 | 287 | return 0; |
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444 | 288 | } |
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