1 | /** @file
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2 | Timer Architectural Protocol as defined in the DXE CIS
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3 |
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4 | Copyright (c) 2005 - 2012, Intel Corporation. All rights reserved.<BR>
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5 | This program and the accompanying materials
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6 | are licensed and made available under the terms and conditions of the BSD License
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7 | which accompanies this distribution. The full text of the license may be found at
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8 | http://opensource.org/licenses/bsd-license.php
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9 |
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10 | THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
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11 | WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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12 |
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13 | **/
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14 |
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15 | #include "Timer.h"
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16 |
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17 | //
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18 | // The handle onto which the Timer Architectural Protocol will be installed
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19 | //
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20 | EFI_HANDLE mTimerHandle = NULL;
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21 |
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22 | //
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23 | // The Timer Architectural Protocol that this driver produces
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24 | //
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25 | EFI_TIMER_ARCH_PROTOCOL mTimer = {
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26 | TimerDriverRegisterHandler,
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27 | TimerDriverSetTimerPeriod,
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28 | TimerDriverGetTimerPeriod,
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29 | TimerDriverGenerateSoftInterrupt
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30 | };
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31 |
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32 | //
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33 | // Pointer to the CPU Architectural Protocol instance
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34 | //
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35 | EFI_CPU_ARCH_PROTOCOL *mCpu;
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36 |
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37 | //
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38 | // Pointer to the Legacy 8259 Protocol instance
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39 | //
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40 | EFI_LEGACY_8259_PROTOCOL *mLegacy8259;
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41 |
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42 | //
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43 | // The notification function to call on every timer interrupt.
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44 | // A bug in the compiler prevents us from initializing this here.
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45 | //
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46 | EFI_TIMER_NOTIFY mTimerNotifyFunction;
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47 |
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48 | //
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49 | // The current period of the timer interrupt
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50 | //
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51 | volatile UINT64 mTimerPeriod = 0;
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52 |
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53 | //
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54 | // Worker Functions
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55 | //
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56 | /**
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57 | Sets the counter value for Timer #0 in a legacy 8254 timer.
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58 |
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59 | @param Count The 16-bit counter value to program into Timer #0 of the legacy 8254 timer.
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60 | **/
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61 | VOID
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62 | SetPitCount (
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63 | IN UINT16 Count
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64 | )
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65 | {
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66 | IoWrite8 (TIMER_CONTROL_PORT, 0x36);
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67 | IoWrite8 (TIMER0_COUNT_PORT, (UINT8)(Count & 0xff));
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68 | IoWrite8 (TIMER0_COUNT_PORT, (UINT8)((Count >> 8) & 0xff));
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69 | }
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70 |
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71 | /**
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72 | 8254 Timer #0 Interrupt Handler.
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73 |
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74 | @param InterruptType The type of interrupt that occured
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75 | @param SystemContext A pointer to the system context when the interrupt occured
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76 | **/
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77 | VOID
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78 | EFIAPI
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79 | TimerInterruptHandler (
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80 | IN EFI_EXCEPTION_TYPE InterruptType,
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81 | IN EFI_SYSTEM_CONTEXT SystemContext
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82 | )
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83 | {
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84 | EFI_TPL OriginalTPL;
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85 |
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86 | OriginalTPL = gBS->RaiseTPL (TPL_HIGH_LEVEL);
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87 |
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88 | mLegacy8259->EndOfInterrupt (mLegacy8259, Efi8259Irq0);
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89 |
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90 | if (mTimerNotifyFunction != NULL) {
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91 | //
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92 | // @bug : This does not handle missed timer interrupts
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93 | //
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94 | mTimerNotifyFunction (mTimerPeriod);
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95 | }
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96 |
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97 | gBS->RestoreTPL (OriginalTPL);
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98 | }
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99 |
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100 | /**
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101 |
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102 | This function registers the handler NotifyFunction so it is called every time
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103 | the timer interrupt fires. It also passes the amount of time since the last
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104 | handler call to the NotifyFunction. If NotifyFunction is NULL, then the
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105 | handler is unregistered. If the handler is registered, then EFI_SUCCESS is
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106 | returned. If the CPU does not support registering a timer interrupt handler,
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107 | then EFI_UNSUPPORTED is returned. If an attempt is made to register a handler
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108 | when a handler is already registered, then EFI_ALREADY_STARTED is returned.
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109 | If an attempt is made to unregister a handler when a handler is not registered,
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110 | then EFI_INVALID_PARAMETER is returned. If an error occurs attempting to
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111 | register the NotifyFunction with the timer interrupt, then EFI_DEVICE_ERROR
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112 | is returned.
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113 |
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114 |
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115 | @param This The EFI_TIMER_ARCH_PROTOCOL instance.
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116 | @param NotifyFunction The function to call when a timer interrupt fires. This
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117 | function executes at TPL_HIGH_LEVEL. The DXE Core will
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118 | register a handler for the timer interrupt, so it can know
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119 | how much time has passed. This information is used to
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120 | signal timer based events. NULL will unregister the handler.
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121 |
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122 | @retval EFI_SUCCESS The timer handler was registered.
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123 | @retval EFI_UNSUPPORTED The platform does not support timer interrupts.
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124 | @retval EFI_ALREADY_STARTED NotifyFunction is not NULL, and a handler is already
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125 | registered.
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126 | @retval EFI_INVALID_PARAMETER NotifyFunction is NULL, and a handler was not
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127 | previously registered.
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128 | @retval EFI_DEVICE_ERROR The timer handler could not be registered.
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129 |
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130 | **/
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131 | EFI_STATUS
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132 | EFIAPI
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133 | TimerDriverRegisterHandler (
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134 | IN EFI_TIMER_ARCH_PROTOCOL *This,
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135 | IN EFI_TIMER_NOTIFY NotifyFunction
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136 | )
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137 | {
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138 | //
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139 | // Check for invalid parameters
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140 | //
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141 | if (NotifyFunction == NULL && mTimerNotifyFunction == NULL) {
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142 | return EFI_INVALID_PARAMETER;
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143 | }
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144 |
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145 | if (NotifyFunction != NULL && mTimerNotifyFunction != NULL) {
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146 | return EFI_ALREADY_STARTED;
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147 | }
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148 |
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149 | mTimerNotifyFunction = NotifyFunction;
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150 |
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151 | return EFI_SUCCESS;
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152 | }
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153 |
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154 | /**
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155 |
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156 | This function adjusts the period of timer interrupts to the value specified
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157 | by TimerPeriod. If the timer period is updated, then the selected timer
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158 | period is stored in EFI_TIMER.TimerPeriod, and EFI_SUCCESS is returned. If
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159 | the timer hardware is not programmable, then EFI_UNSUPPORTED is returned.
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160 | If an error occurs while attempting to update the timer period, then the
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161 | timer hardware will be put back in its state prior to this call, and
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162 | EFI_DEVICE_ERROR is returned. If TimerPeriod is 0, then the timer interrupt
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163 | is disabled. This is not the same as disabling the CPU's interrupts.
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164 | Instead, it must either turn off the timer hardware, or it must adjust the
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165 | interrupt controller so that a CPU interrupt is not generated when the timer
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166 | interrupt fires.
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167 |
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168 |
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169 | @param This The EFI_TIMER_ARCH_PROTOCOL instance.
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170 | @param TimerPeriod The rate to program the timer interrupt in 100 nS units. If
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171 | the timer hardware is not programmable, then EFI_UNSUPPORTED is
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172 | returned. If the timer is programmable, then the timer period
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173 | will be rounded up to the nearest timer period that is supported
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174 | by the timer hardware. If TimerPeriod is set to 0, then the
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175 | timer interrupts will be disabled.
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176 |
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177 | @retval EFI_SUCCESS The timer period was changed.
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178 | @retval EFI_UNSUPPORTED The platform cannot change the period of the timer interrupt.
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179 | @retval EFI_DEVICE_ERROR The timer period could not be changed due to a device error.
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180 |
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181 | **/
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182 | EFI_STATUS
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183 | EFIAPI
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184 | TimerDriverSetTimerPeriod (
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185 | IN EFI_TIMER_ARCH_PROTOCOL *This,
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186 | IN UINT64 TimerPeriod
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187 | )
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188 | {
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189 | UINT64 TimerCount;
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190 |
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191 | //
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192 | // The basic clock is 1.19318 MHz or 0.119318 ticks per 100 ns.
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193 | // TimerPeriod * 0.119318 = 8254 timer divisor. Using integer arithmetic
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194 | // TimerCount = (TimerPeriod * 119318)/1000000.
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195 | //
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196 | // Round up to next highest integer. This guarantees that the timer is
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197 | // equal to or slightly longer than the requested time.
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198 | // TimerCount = ((TimerPeriod * 119318) + 500000)/1000000
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199 | //
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200 | // Note that a TimerCount of 0 is equivalent to a count of 65,536
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201 | //
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202 | // Since TimerCount is limited to 16 bits for IA32, TimerPeriod is limited
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203 | // to 20 bits.
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204 | //
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205 | if (TimerPeriod == 0) {
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206 | //
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207 | // Disable timer interrupt for a TimerPeriod of 0
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208 | //
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209 | mLegacy8259->DisableIrq (mLegacy8259, Efi8259Irq0);
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210 | } else {
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211 |
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212 | //
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213 | // Convert TimerPeriod into 8254 counts
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214 | //
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215 | TimerCount = DivU64x32 (MultU64x32 (119318, (UINT32) TimerPeriod) + 500000, 1000000);
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216 |
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217 | //
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218 | // Check for overflow
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219 | //
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220 | if (TimerCount >= 65536) {
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221 | TimerCount = 0;
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222 | TimerPeriod = MAX_TIMER_TICK_DURATION;
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223 | }
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224 | //
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225 | // Program the 8254 timer with the new count value
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226 | //
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227 | SetPitCount ((UINT16) TimerCount);
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228 |
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229 | //
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230 | // Enable timer interrupt
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231 | //
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232 | mLegacy8259->EnableIrq (mLegacy8259, Efi8259Irq0, FALSE);
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233 | }
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234 | //
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235 | // Save the new timer period
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236 | //
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237 | mTimerPeriod = TimerPeriod;
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238 |
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239 | return EFI_SUCCESS;
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240 | }
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241 |
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242 | /**
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243 |
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244 | This function retrieves the period of timer interrupts in 100 ns units,
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245 | returns that value in TimerPeriod, and returns EFI_SUCCESS. If TimerPeriod
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246 | is NULL, then EFI_INVALID_PARAMETER is returned. If a TimerPeriod of 0 is
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247 | returned, then the timer is currently disabled.
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248 |
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249 |
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250 | @param This The EFI_TIMER_ARCH_PROTOCOL instance.
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251 | @param TimerPeriod A pointer to the timer period to retrieve in 100 ns units. If
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252 | 0 is returned, then the timer is currently disabled.
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253 |
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254 | @retval EFI_SUCCESS The timer period was returned in TimerPeriod.
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255 | @retval EFI_INVALID_PARAMETER TimerPeriod is NULL.
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256 |
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257 | **/
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258 | EFI_STATUS
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259 | EFIAPI
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260 | TimerDriverGetTimerPeriod (
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261 | IN EFI_TIMER_ARCH_PROTOCOL *This,
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262 | OUT UINT64 *TimerPeriod
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263 | )
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264 | {
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265 | if (TimerPeriod == NULL) {
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266 | return EFI_INVALID_PARAMETER;
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267 | }
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268 |
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269 | *TimerPeriod = mTimerPeriod;
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270 |
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271 | return EFI_SUCCESS;
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272 | }
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273 |
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274 | /**
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275 |
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276 | This function generates a soft timer interrupt. If the platform does not support soft
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277 | timer interrupts, then EFI_UNSUPPORTED is returned. Otherwise, EFI_SUCCESS is returned.
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278 | If a handler has been registered through the EFI_TIMER_ARCH_PROTOCOL.RegisterHandler()
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279 | service, then a soft timer interrupt will be generated. If the timer interrupt is
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280 | enabled when this service is called, then the registered handler will be invoked. The
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281 | registered handler should not be able to distinguish a hardware-generated timer
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282 | interrupt from a software-generated timer interrupt.
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283 |
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284 |
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285 | @param This The EFI_TIMER_ARCH_PROTOCOL instance.
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286 |
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287 | @retval EFI_SUCCESS The soft timer interrupt was generated.
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288 | @retval EFI_UNSUPPORTEDT The platform does not support the generation of soft timer interrupts.
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289 |
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290 | **/
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291 | EFI_STATUS
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292 | EFIAPI
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293 | TimerDriverGenerateSoftInterrupt (
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294 | IN EFI_TIMER_ARCH_PROTOCOL *This
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295 | )
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296 | {
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297 | EFI_STATUS Status;
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298 | UINT16 IRQMask;
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299 | EFI_TPL OriginalTPL;
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300 |
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301 | //
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302 | // If the timer interrupt is enabled, then the registered handler will be invoked.
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303 | //
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304 | Status = mLegacy8259->GetMask (mLegacy8259, NULL, NULL, &IRQMask, NULL);
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305 | ASSERT_EFI_ERROR (Status);
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306 | if ((IRQMask & 0x1) == 0) {
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307 | //
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308 | // Invoke the registered handler
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309 | //
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310 | OriginalTPL = gBS->RaiseTPL (TPL_HIGH_LEVEL);
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311 |
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312 | if (mTimerNotifyFunction != NULL) {
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313 | //
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314 | // @bug : This does not handle missed timer interrupts
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315 | //
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316 | mTimerNotifyFunction (mTimerPeriod);
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317 | }
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318 |
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319 | gBS->RestoreTPL (OriginalTPL);
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320 | } else {
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321 | return EFI_UNSUPPORTED;
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322 | }
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323 |
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324 | return EFI_SUCCESS;
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325 | }
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326 |
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327 | /**
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328 | Initialize the Timer Architectural Protocol driver
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329 |
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330 | @param ImageHandle ImageHandle of the loaded driver
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331 | @param SystemTable Pointer to the System Table
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332 |
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333 | @retval EFI_SUCCESS Timer Architectural Protocol created
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334 | @retval EFI_OUT_OF_RESOURCES Not enough resources available to initialize driver.
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335 | @retval EFI_DEVICE_ERROR A device error occured attempting to initialize the driver.
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336 |
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337 | **/
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338 | EFI_STATUS
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339 | EFIAPI
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340 | TimerDriverInitialize (
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341 | IN EFI_HANDLE ImageHandle,
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342 | IN EFI_SYSTEM_TABLE *SystemTable
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343 | )
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344 | {
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345 | EFI_STATUS Status;
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346 | UINT32 TimerVector;
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347 |
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348 | //
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349 | // Initialize the pointer to our notify function.
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350 | //
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351 | mTimerNotifyFunction = NULL;
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352 |
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353 | //
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354 | // Make sure the Timer Architectural Protocol is not already installed in the system
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355 | //
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356 | ASSERT_PROTOCOL_ALREADY_INSTALLED (NULL, &gEfiTimerArchProtocolGuid);
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357 |
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358 | //
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359 | // Find the CPU architectural protocol.
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360 | //
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361 | Status = gBS->LocateProtocol (&gEfiCpuArchProtocolGuid, NULL, (VOID **) &mCpu);
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362 | ASSERT_EFI_ERROR (Status);
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363 |
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364 | //
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365 | // Find the Legacy8259 protocol.
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366 | //
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367 | Status = gBS->LocateProtocol (&gEfiLegacy8259ProtocolGuid, NULL, (VOID **) &mLegacy8259);
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368 | ASSERT_EFI_ERROR (Status);
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369 |
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370 | //
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371 | // Force the timer to be disabled
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372 | //
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373 | Status = TimerDriverSetTimerPeriod (&mTimer, 0);
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374 | ASSERT_EFI_ERROR (Status);
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375 |
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376 | //
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377 | // Get the interrupt vector number corresponding to IRQ0 from the 8259 driver
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378 | //
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379 | TimerVector = 0;
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380 | Status = mLegacy8259->GetVector (mLegacy8259, Efi8259Irq0, (UINT8 *) &TimerVector);
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381 | ASSERT_EFI_ERROR (Status);
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382 |
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383 | //
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384 | // Install interrupt handler for 8254 Timer #0 (ISA IRQ0)
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385 | //
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386 | Status = mCpu->RegisterInterruptHandler (mCpu, TimerVector, TimerInterruptHandler);
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387 | ASSERT_EFI_ERROR (Status);
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388 |
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389 | //
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390 | // Force the timer to be enabled at its default period
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391 | //
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392 | Status = TimerDriverSetTimerPeriod (&mTimer, DEFAULT_TIMER_TICK_DURATION);
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393 | ASSERT_EFI_ERROR (Status);
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394 |
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395 | //
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396 | // Install the Timer Architectural Protocol onto a new handle
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397 | //
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398 | Status = gBS->InstallMultipleProtocolInterfaces (
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399 | &mTimerHandle,
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400 | &gEfiTimerArchProtocolGuid, &mTimer,
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401 | NULL
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402 | );
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403 | ASSERT_EFI_ERROR (Status);
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404 |
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405 | return Status;
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406 | }
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407 |
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