/* * Copyright (c) 2013 ETH Zurich. All rights reserved. * * This file is distributed under the terms in the attached LICENSE file. * If you do not find this file, copies can be found by writing to: * ETH Zurich D-INFK, CAB F.78, Universitaetstrasse 6, CH-8092 Zurich, * Attn: Systems Group. */ /* * omap44xx_mpu_cm1.dev * * DESCRIPTION: * * NOTE: This file has been automatically generated based on the * XML files extracted from the TI RDT v1.0.0.4p Tool. * Download from here: http://www.ti.com/product/omap4460 * This means that the file might not be optimal in terms of naming * conventions for constants and registers (duplicated * namespaces in register and device name etc.). * Also, because of the underlying structure from the original XML * it's possible that some constants appear multiple times (if they * have slightly different descriptions for example). * * You want to clean that up before using the files for the first time! */ device omap44xx_mpu_cm1 msbfirst ( addr base ) "" { constants clkactivity_mpu_dpll_clk_status width(1) "" { CLKACTIVITY_MPU_DPLL_CLK_0_r = 0 "Corresponding clock is definitely gated"; CLKACTIVITY_MPU_DPLL_CLK_1_r = 1 "Corresponding clock is running or gating/ungating transition is ongoing"; }; constants clktrctrl_status width(2) "" { CLKTRCTRL_0 = 0 "NO_SLEEP: Sleep transition cannot be initiated. Wakeup transition may however occur."; CLKTRCTRL_1_r = 1 "Reserved"; CLKTRCTRL_2 = 2 "SW_WKUP: Start a software forced wake-up transition on the domain."; CLKTRCTRL_3 = 3 "HW_AUTO: Automatic transition is enabled. Sleep and wakeup transition are based upon hardware conditions."; }; register cm_mpu_clkstctrl addr(base, 0x0) "This register enables the MPU domain power state transition. It controls the hardware supervised domain power state transition between ON-ACTIVE and ON-INACTIVE states. It also holds 1 status bit per clock input of the domain." { _ 23 mbz; clkactivity_mpu_dpll_clk 1 ro type(clkactivity_mpu_dpll_clk_status) "This field indicates the state of the MPU_DPLL_CLK clock in the domain. [warm reset insensitive]"; _ 6 mbz; clktrctrl 2 rw type(clktrctrl_status) "Controls the clock state transition of the MPU clock domain."; }; constants c2c_statdep_status width(1) "" { C2C_STATDEP_0_r = 0 "Dependency is disabled"; }; constants l4wkup_statdep_status width(1) "" { L4WKUP_STATDEP_0 = 0 "Dependency is disabled"; L4WKUP_STATDEP_1 = 1 "Dependency is enabled"; }; register cm_mpu_staticdep addr(base, 0x4) "This register controls the static domain dependencies from MPU domain towards 'target' domains. It is relevant only for domain having system initiator(s)." { _ 13 mbz; c2c_statdep 1 ro type(c2c_statdep_status) "Static dependency towards C2C clock domain"; _ 1 mbz; alwoncore_statdep 1 ro type(c2c_statdep_status) "Static dependency towards ALWONCORE clock domain"; l4wkup_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards L4WKUP clock domain"; l4sec_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards L4SEC clock domain"; l4per_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards L4PER clock domain"; l4cfg_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards L4CFG clock domain"; sdma_statdep 1 ro type(c2c_statdep_status) "Static dependency towards SDMA clock domain"; sgx_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards SGX clock domain"; iss_statdep 1 ro type(c2c_statdep_status) "Static dependency towards ISS clock domain"; dss_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards DSS clock domain"; l3init_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards L3INIT clock domain"; l3_2_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards L3_2 clock domain"; l3_1_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards L3_1 clock domain"; memif_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards MEMIF clock domain"; abe_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards ABE clock domain"; ivahd_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards IVAHD clock domain"; dsp_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards DSP clock domain"; mpu_m3_statdep 1 rw type(l4wkup_statdep_status) "Static dependency towards MPU_A3 clock domain"; }; register cm_mpu_dynamicdep addr(base, 0x8) "This register controls the dynamic domain depedencies from MPU domain towards 'target' domains. It is relevant only for domain having INTRCONN master port(s)." { _ 4 mbz; windowsize 4 rw "Size of sliding window used to monitor INTRCONN interface activity for determination of auto-sleep feature. Time unit defined byCM_DYN_DEP_PRESCAL register."; _ 18 mbz; l3_1_dyndep 1 ro type(l4wkup_statdep_status) "Dynamic dependency towards L3_1 clock domain"; memif_dyndep 1 ro type(l4wkup_statdep_status) "Dynamic dependency towards MEMIF clock domain"; abe_dyndep 1 ro type(l4wkup_statdep_status) "Dynamic dependency towards ABE clock domain"; _ 3 mbz; }; constants clksel_abe_div_mode_status width(1) "" { CLKSEL_ABE_DIV_MODE_0 = 0 "MPU DPLL clock divided by 4"; CLKSEL_ABE_DIV_MODE_1 = 1 "MPU DPLL clock divided by 8"; }; constants clksel_emif_div_mode_status width(1) "" { CLKSEL_EMIF_DIV_MODE_0 = 0 "MPU DPLL clock divided by 2"; CLKSEL_EMIF_DIV_MODE_1 = 1 "MPU DPLL clock divided by 4"; }; constants stbyst_status width(1) "" { STBYST_0_r = 0 "Module is functional (not in standby)"; STBYST_1_r = 1 "Module is in standby"; }; constants idlest_status width(2) "" { IDLEST_0_r = 0 "Module is fully functional, including INTRCONN"; IDLEST_1_r = 1 "Module is performing transition: wakeup, or sleep, or sleep abortion"; IDLEST_2_r = 2 "Module is in Idle mode (only INTRCONN part). It is functional if using separate functional clock"; IDLEST_3_r = 3 "Module is disabled and cannot be accessed"; }; constants modulemode_status width(2) "" { MODULEMODE_1_r = 1 "Module is managed automatically by hardware according to clock domain transition. A clock domain sleep transition put module into idle. A wakeup domain transition put it back into function. Module clocks may be gated according to the clock domain state."; }; register cm_mpu_mpu_clkctrl addr(base, 0x20) "This register manages the MPU clocks." { _ 6 mbz; clksel_abe_div_mode 1 rw type(clksel_abe_div_mode_status) "Selects the ratio for MPU-ABE async bridge versus MPU DPLL clock."; clksel_emif_div_mode 1 rw type(clksel_emif_div_mode_status) "Selects the ratio for memory adapter clock (MA_EOCP_ICLK) versus MPU DPLL clock."; _ 5 mbz; stbyst 1 ro type(stbyst_status) "Module standby status. [warm reset insensitive]"; idlest 2 ro type(idlest_status) "Module idle status. [warm reset insensitive]"; _ 14 mbz; modulemode 2 ro type(modulemode_status) "Control the way mandatory clocks are managed."; }; };