* Put something on screen * Use the 32bit watch_date_time repr to pass from JS * Implement periodic callbacks * Clear display on enabling * Hook up watch_set_led_color() to SVG (green-only) * Make debug output full-width * Remove default Emscripten canvas * Implement sleep and button clicks * Fix time zone conversion bug in beats-time app * Clean up warnings * Fix pin levels * Set time zone to browser value (if available) * Add basic backup data saving * Silence format specifier warnings in both targets * Remove unnecessary, copied files * Use RTC pointer to clear callbacks (if available) * Use preprocessor define to avoid hardcoding MOVEMENT_NUM_FACES * Change each face to const preprocessor definition * Remove Intl.DateTimeFormat usage * Update shell.html title, header * Add touch start/end event handlers on SVG buttons * Update shell.html * Update folder structure (shared, simulator, hardware under watch-library) * Tease out shared components from watch_slcd * Clean up simulator watch_slcd.c inline JS calls * Fix missing newlines at end of file * Add simulator warnings (except format, unused-paremter) * Implement remaining watch_rtc functions * Fix button bug on mouse down then drag out * Implement remaining watch_slcd functions * Link keyboard events to buttons (for keys A, L, M) * Rewrite event handling (mouse, touch, keyboard) in C * Set explicit text UTF-8 charset in shell.html * Address PR comments * Remove unused directories from include paths
319 lines
9.0 KiB
C
319 lines
9.0 KiB
C
/* Auto-generated config file hpl_rtc_config.h */
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#ifndef HPL_RTC_CONFIG_H
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#define HPL_RTC_CONFIG_H
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// <<< Use Configuration Wizard in Context Menu >>>
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// <h> Basic settings
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#ifndef CONF_RTC_ENABLE
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#define CONF_RTC_ENABLE 1
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#endif
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// <q> Force reset RTC on initialization
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// <i> Force RTC to reset on initialization.
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// <i> Note that the previous power down data in RTC is lost if it's enabled.
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// <id> rtc_arch_init_reset
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#ifndef CONF_RTC_INIT_RESET
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#define CONF_RTC_INIT_RESET 0
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#endif
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// <o> Prescaler configuration
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// <0x0=>OFF(Peripheral clock divided by 1)
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// <0x1=>Peripheral clock divided by 1
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// <0x2=>Peripheral clock divided by 2
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// <0x3=>Peripheral clock divided by 4
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// <0x4=>Peripheral clock divided by 8
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// <0x5=>Peripheral clock divided by 16
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// <0x6=>Peripheral clock divided by 32
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// <0x7=>Peripheral clock divided by 64
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// <0x8=>Peripheral clock divided by 128
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// <0x9=>Peripheral clock divided by 256
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// <0xA=>Peripheral clock divided by 512
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// <0xB=>Peripheral clock divided by 1024
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// <i> These bits define the RTC clock relative to the peripheral clock
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// <id> rtc_arch_prescaler
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#ifndef CONF_RTC_PRESCALER
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#define CONF_RTC_PRESCALER 0xb
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#endif
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#ifndef CONF_RTC_COMP_VAL
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#define CONF_RTC_COMP_VAL 0
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#endif
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// <e> RTC Tamper Input 0 settings
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// <id> tamper_input_0_settings
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#ifndef CONF_TAMPER_INPUT_0_SETTINGS
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#define CONF_TAMPER_INPUT_0_SETTINGS 0
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#endif
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// <q> Tamper Level Settings
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// <i> Indicates Tamper input 0 level
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// <id> tamper_level_0
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#ifndef CONF_RTC_TAMP_LVL_0
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#define CONF_RTC_TAMP_LVL_0 0
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#endif
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// <o> RTC Tamper Input Action
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// <0x0=>OFF(Disabled)
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// <0x1=>Wake and Set Tamper Flag
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// <0x2=>Capture Timestamp and Set Tamper Flag
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// <0x3=>Active Layer Mode.IN and OUT pin is used.Timestamp is also captured.
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// <i> These bits define the RTC Tamper Input Action to be performed
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// <id> rtc_tamper_input_action_0
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#ifndef CONF_RTC_TAMPER_INACT_0
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#define CONF_RTC_TAMPER_INACT_0 0
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#endif
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// <q> Debounce Enable for Tamper Input
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// <i> Indicates Debounce should be enabled for Tamper input 0
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// <id> tamper_debounce_enable_0
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#ifndef CONF_RTC_TAMP_DEBNC_0
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#define CONF_RTC_TAMP_DEBNC_0 0
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#endif
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// </e>
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// <e> RTC Tamper Input 1 settings
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// <id> tamper_input_1_settings
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#ifndef CONF_TAMPER_INPUT_1_SETTINGS
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#define CONF_TAMPER_INPUT_1_SETTINGS 0
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#endif
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// <q> Tamper Level Settings
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// <i> Indicates Tamper input 1 level
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// <id> tamper_level_1
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#ifndef CONF_RTC_TAMP_LVL_1
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#define CONF_RTC_TAMP_LVL_1 0
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#endif
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// <o> RTC Tamper Input Action
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// <0x0=>OFF(Disabled)
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// <0x1=>Wake and Set Tamper Flag
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// <0x2=>Capture Timestamp and Set Tamper Flag
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// <0x3=>Active Layer Mode.IN and OUT pin is used.Timestamp is also captured.
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// <i> These bits define the RTC Tamper Input Action to be performed
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// <id> rtc_tamper_input_action_1
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#ifndef CONF_RTC_TAMPER_INACT_1
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#define CONF_RTC_TAMPER_INACT_1 0
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#endif
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// <q> Debounce Enable for Tamper Input
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// <i> Indicates Debounce should be enabled for Tamper input 1
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// <id> tamper_debounce_enable_1
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#ifndef CONF_RTC_TAMP_DEBNC_1
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#define CONF_RTC_TAMP_DEBNC_1 0
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#endif
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// </e>
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// <e> RTC Tamper Input 2 settings
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// <id> tamper_input_2_settings
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#ifndef CONF_TAMPER_INPUT_2_SETTINGS
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#define CONF_TAMPER_INPUT_2_SETTINGS 0
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#endif
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// <q> Tamper Level Settings
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// <i> Indicates Tamper input 2 level
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// <id> tamper_level_2
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#ifndef CONF_RTC_TAMP_LVL_2
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#define CONF_RTC_TAMP_LVL_2 0
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#endif
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// <o> RTC Tamper Input Action
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// <0x0=>OFF(Disabled)
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// <0x1=>Wake and Set Tamper Flag
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// <0x2=>Capture Timestamp and Set Tamper Flag
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// <0x3=>Active Layer Mode.IN and OUT pin is used.Timestamp is also captured.
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// <i> These bits define the RTC Tamper Input Action to be performed
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// <id> rtc_tamper_input_action_2
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#ifndef CONF_RTC_TAMPER_INACT_2
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#define CONF_RTC_TAMPER_INACT_2 0
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#endif
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// <q> Debounce Enable for Tamper Input
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// <i> Indicates Debounce should be enabled for Tamper input 2
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// <id> tamper_debounce_enable_2
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#ifndef CONF_RTC_TAMP_DEBNC_2
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#define CONF_RTC_TAMP_DEBNC_2 0
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#endif
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// </e>
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// <e> RTC Tamper Input 3 settings
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// <id> tamper_input_3_settings
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#ifndef CONF_TAMPER_INPUT_3_SETTINGS
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#define CONF_TAMPER_INPUT_3_SETTINGS 0
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#endif
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// <q> Tamper Level Settings
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// <i> Indicates Tamper input 3 level
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// <id> tamper_level_3
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#ifndef CONF_RTC_TAMP_LVL_3
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#define CONF_RTC_TAMP_LVL_3 0
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#endif
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// <o> RTC Tamper Input Action
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// <0x0=>OFF(Disabled)
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// <0x1=>Wake and Set Tamper Flag
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// <0x2=>Capture Timestamp and Set Tamper Flag
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// <0x3=>Active Layer Mode.IN and OUT pin is used.Timestamp is also captured.
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// <i> These bits define the RTC Tamper Input Action to be performed
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// <id> rtc_tamper_input_action_3
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#ifndef CONF_RTC_TAMPER_INACT_3
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#define CONF_RTC_TAMPER_INACT_3 0
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#endif
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// <q> Debounce Enable for Tamper Input
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// <i> Indicates Debounce should be enabled for Tamper input 3
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// <id> tamper_debounce_enable_3
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#ifndef CONF_RTC_TAMP_DEBNC_3
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#define CONF_RTC_TAMP_DEBNC_3 0
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#endif
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// </e>
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// <e> RTC Tamper Input 4 settings
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// <id> tamper_input_4_settings
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#ifndef CONF_TAMPER_INPUT_4_SETTINGS
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#define CONF_TAMPER_INPUT_4_SETTINGS 0
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#endif
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// <q> Tamper Level Settings
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// <i> Indicates Tamper input 4 level
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// <id> tamper_level_4
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#ifndef CONF_RTC_TAMP_LVL_4
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#define CONF_RTC_TAMP_LVL_4 0
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#endif
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// <o> RTC Tamper Input Action
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// <0x0=>OFF(Disabled)
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// <0x1=>Wake and Set Tamper Flag
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// <0x2=>Capture Timestamp and Set Tamper Flag
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// <0x3=>Active Layer Mode.IN and OUT pin is used.Timestamp is also captured.
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// <i> These bits define the RTC Tamper Input Action to be performed
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// <id> rtc_tamper_input_action_4
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#ifndef CONF_RTC_TAMPER_INACT_4
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#define CONF_RTC_TAMPER_INACT_4 0
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#endif
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// <q> Debounce Enable for Tamper Input
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// <i> Indicates Debounce should be enabled for Tamper input 4
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// <id> tamper_debounce_enable_4
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#ifndef CONF_RTC_TAMP_DEBNC_4
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#define CONF_RTC_TAMP_DEBNC_4 0
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#endif
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// </e>
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// <o> RTC Tamper Active Layer Frequency Prescalar
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// <0x0=>DIV2 CLK_RTC_OUT is CLK_RTC /2
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// <0x1=>DIV4 CLK_RTC_OUT is CLK_RTC /4
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// <0x2=>DIV8 CLK_RTC_OUT is CLK_RTC /8
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// <0x3=>DIV16 CLK_RTC_OUT is CLK_RTC /16
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// <0x4=>DIV32 CLK_RTC_OUT is CLK_RTC /32
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// <0x5=>DIV64 CLK_RTC_OUT is CLK_RTC /64
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// <0x6=>DIV128 CLK_RTC_OUT is CLK_RTC /128
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// <0x7=>DIV256 CLK_RTC_OUT is CLK_RTC /256
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// <i> These bits define the RTC Tamper Active Layer Frequecny Prescalar
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// <id> rtc_tamper_active_layer_frequency_prescalar
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#ifndef CONF_RTC_TAMP_ACT_LAYER_FREQ_PRES
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#define CONF_RTC_TAMP_ACT_LAYER_FREQ_PRES 0
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#endif
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// <o> RTC Tamper Debounce Frequency Prescalar
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// <0x0=>DIV2 CLK_RTC_DEB is CLK_RTC /2
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// <0x1=>DIV4 CLK_RTC_DEB is CLK_RTC /4
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// <0x2=>DIV8 CLK_RTC_DEB is CLK_RTC /8
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// <0x3=>DIV16 CLK_RTC_DEB is CLK_RTC /16
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// <0x4=>DIV32 CLK_RTC_DEB is CLK_RTC /32
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// <0x5=>DIV64 CLK_RTC_DEB is CLK_RTC /64
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// <0x6=>DIV128 CLK_RTC_DEB is CLK_RTC /128
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// <0x7=>DIV256 CLK_RTC_DEB is CLK_RTC /256
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// <i> These bits define the RTC Debounce Frequency Prescalar
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// <id> rtc_tamper_debounce_frequency_prescalar
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#ifndef CONF_RTC_TAMP_DEBF_PRES
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#define CONF_RTC_TAMP_DEBF_PRES 0
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#endif
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// <e> Event control
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// <id> rtc_event_control
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#ifndef CONF_RTC_EVENT_CONTROL_ENABLE
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#define CONF_RTC_EVENT_CONTROL_ENABLE 0
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#endif
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// <q> Periodic Interval 0 Event Output
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// <i> This bit indicates whether Periodic interval 0 event is enabled and will be generated
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// <id> rtc_pereo0
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#ifndef CONF_RTC_PEREO0
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#define CONF_RTC_PEREO0 0
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#endif
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// <q> Periodic Interval 1 Event Output
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// <i> This bit indicates whether Periodic interval 1 event is enabled and will be generated
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// <id> rtc_pereo1
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#ifndef CONF_RTC_PEREO1
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#define CONF_RTC_PEREO1 0
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#endif
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// <q> Periodic Interval 2 Event Output
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// <i> This bit indicates whether Periodic interval 2 event is enabled and will be generated
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// <id> rtc_pereo2
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#ifndef CONF_RTC_PEREO2
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#define CONF_RTC_PEREO2 0
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#endif
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// <q> Periodic Interval 3 Event Output
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// <i> This bit indicates whether Periodic interval 3 event is enabled and will be generated
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// <id> rtc_pereo3
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#ifndef CONF_RTC_PEREO3
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#define CONF_RTC_PEREO3 0
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#endif
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// <q> Periodic Interval 4 Event Output
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// <i> This bit indicates whether Periodic interval 4 event is enabled and will be generated
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// <id> rtc_pereo4
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#ifndef CONF_RTC_PEREO4
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#define CONF_RTC_PEREO4 0
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#endif
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// <q> Periodic Interval 5 Event Output
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// <i> This bit indicates whether Periodic interval 5 event is enabled and will be generated
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// <id> rtc_pereo5
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#ifndef CONF_RTC_PEREO5
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#define CONF_RTC_PEREO5 0
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#endif
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// <q> Periodic Interval 6 Event Output
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// <i> This bit indicates whether Periodic interval 6 event is enabled and will be generated
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// <id> rtc_pereo6
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#ifndef CONF_RTC_PEREO6
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#define CONF_RTC_PEREO6 0
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#endif
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// <q> Periodic Interval 7 Event Output
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// <i> This bit indicates whether Periodic interval 7 event is enabled and will be generated
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// <id> rtc_pereo7
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#ifndef CONF_RTC_PEREO7
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#define CONF_RTC_PEREO7 0
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#endif
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// <q> Compare 0 Event Output
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// <i> This bit indicates whether Compare O event is enabled and will be generated
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// <id> rtc_cmpeo0
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#ifndef CONF_RTC_COMPE0
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#define CONF_RTC_COMPE0 0
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#endif
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// <q> Overflow Event Output
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// <i> This bit indicates whether Overflow event is enabled and will be generated
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// <id> rtc_ovfeo
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#ifndef CONF_RTC_OVFEO
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#define CONF_RTC_OVFEO 0
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#endif
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// </e>
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// </h>
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// <<< end of configuration section >>>
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#endif // HPL_RTC_CONFIG_H
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