diff --git a/mfkey_32_64/.gitignore b/mfkey_32_64/.gitignore deleted file mode 100644 index 3889eda0..00000000 --- a/mfkey_32_64/.gitignore +++ /dev/null @@ -1,62 +0,0 @@ -# Built application files -*.apk -*.ap_ - -# Files for the ART/Dalvik VM -*.dex - -# Java class files -*.class - -# Generated files -bin/ -gen/ -out/ - -# Cmake gen -.cxx/ - -# Gradle files -.gradle/ -build/ - -# Local configuration file (sdk path, etc) -local.properties - -# Proguard folder generated by Eclipse -proguard/ - -# Log Files -*.log - -# Android Studio Navigation editor temp files -.navigation/ - -# Android Studio captures folder -captures/ - -# IntelliJ -*.iml -.idea/ - -# Keystore files -# Uncomment the following line if you do not want to check your keystore files in. -#*.jks - -# External native build folder generated in Android Studio 2.2 and later -.externalNativeBuild - -# Google Services (e.g. APIs or Firebase) -google-services.json - -# Freeline -freeline.py -freeline/ -freeline_project_description.json - -# fastlane -fastlane/report.xml -fastlane/Preview.html -fastlane/screenshots -fastlane/test_output -fastlane/readme.md diff --git a/mfkey_32_64/build.gradle b/mfkey_32_64/build.gradle deleted file mode 100644 index 78f77521..00000000 --- a/mfkey_32_64/build.gradle +++ /dev/null @@ -1,45 +0,0 @@ -apply plugin: 'com.android.library' - -android { - compileSdkVersion 29 - buildToolsVersion "29.0.2" - - defaultConfig { - minSdkVersion 19 - targetSdkVersion 29 - externalNativeBuild { - cmake { - arguments '-DANDROID_STL=c++_static' - abiFilters "x86", "x86_64", "armeabi-v7a", "arm64-v8a" - } - //abiFilters "armeabi" - /*abiFilters "arm64-v8a"*/ - /*abiFilters "x86_64"*/ - /*abiFilters "arm64-v8a" - abiFilters "mips" - abiFilters "mips64" - abiFilters "x86" - abiFilters "x86_64"*/ - } - } - externalNativeBuild { - cmake { - version '3.10.2' - path 'src/main/cpp/CMakeLists.txt' - } - } - - buildTypes { - release { - minifyEnabled false - proguardFiles getDefaultProguardFile('proguard-android-optimize.txt'), 'proguard-rules.pro' - } - } -} - -dependencies { - implementation fileTree(dir: 'libs', include: ['*.jar']) - api project(':console') - - implementation 'androidx.appcompat:appcompat:1.1.0' -} diff --git a/mfkey_32_64/proguard-rules.pro b/mfkey_32_64/proguard-rules.pro deleted file mode 100644 index f1b42451..00000000 --- a/mfkey_32_64/proguard-rules.pro +++ /dev/null @@ -1,21 +0,0 @@ -# Add project specific ProGuard rules here. -# You can control the set of applied configuration files using the -# proguardFiles setting in build.gradle. -# -# For more details, see -# http://developer.android.com/guide/developing/tools/proguard.html - -# If your project uses WebView with JS, uncomment the following -# and specify the fully qualified class name to the JavaScript interface -# class: -#-keepclassmembers class fqcn.of.javascript.interface.for.webview { -# public *; -#} - -# Uncomment this to preserve the line number information for -# debugging stack traces. -#-keepattributes SourceFile,LineNumberTable - -# If you keep the line number information, uncomment this to -# hide the original source file name. -#-renamesourcefileattribute SourceFile diff --git a/mfkey_32_64/src/main/AndroidManifest.xml b/mfkey_32_64/src/main/AndroidManifest.xml deleted file mode 100644 index 4129f8f3..00000000 --- a/mfkey_32_64/src/main/AndroidManifest.xml +++ /dev/null @@ -1,2 +0,0 @@ - diff --git a/mfkey_32_64/src/main/cpp/CMakeLists.txt b/mfkey_32_64/src/main/cpp/CMakeLists.txt deleted file mode 100644 index 657350f6..00000000 --- a/mfkey_32_64/src/main/cpp/CMakeLists.txt +++ /dev/null @@ -1,38 +0,0 @@ -#需要的最cmake版本 -cmake_minimum_required(VERSION 3.4.1) - -#添加动态库定义 -add_library(mfkey32 SHARED - mfkey32.c - tools.c - parity.c - mfkey.c - util_posix.c - crypto1.c - crapto1.c - bucketsort.c - ) - -#添加头文件配置 -target_include_directories(mfkey32 PRIVATE ${CMAKE_CURRENT_SOURCE_DIR}/) - -#添加动态库链接! -target_link_libraries(mfkey32 android log) - -#添加动态库定义 -add_library(mfkey64 SHARED - mfkey64.c - tools.c - parity.c - mfkey.c - util_posix.c - crypto1.c - crapto1.c - bucketsort.c - ) - -#添加头文件配置 -target_include_directories(mfkey64 PRIVATE ${CMAKE_CURRENT_SOURCE_DIR}/) - -#添加动态库链接! -target_link_libraries(mfkey64 android log) \ No newline at end of file diff --git a/mfkey_32_64/src/main/cpp/at91sam7s512.h b/mfkey_32_64/src/main/cpp/at91sam7s512.h deleted file mode 100644 index 2cdcbce3..00000000 --- a/mfkey_32_64/src/main/cpp/at91sam7s512.h +++ /dev/null @@ -1,2296 +0,0 @@ -// ---------------------------------------------------------------------------- -// ATMEL Microcontroller Software Support - ROUSSET - -// ---------------------------------------------------------------------------- -// Copyright (c) 2006, Atmel Corporation -// -// All rights reserved. -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are met: -// -// - Redistributions of source code must retain the above copyright notice, -// this list of conditions and the disclaimer below. -// -// Atmel's name may not be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// DISCLAIMER: THIS SOFTWARE IS PROVIDED BY ATMEL "AS IS" AND ANY EXPRESS OR -// IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF -// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT ARE -// DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT, INDIRECT, -// INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, -// OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF -// LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING -// NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, -// EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. -// ---------------------------------------------------------------------------- -// File Name : AT91SAM7S512.h -// Object : AT91SAM7S512 definitions -// Generated : AT91 SW Application Group 07/07/2008 (16:13:20) -// -// CVS Reference : /AT91SAM7S512.pl/1.6/Wed Aug 30 14:08:44 2006// -// CVS Reference : /SYS_SAM7S.pl/1.2/Thu Feb 3 10:47:39 2005// -// CVS Reference : /MC_SAM7SE.pl/1.10/Thu Feb 16 16:35:28 2006// -// CVS Reference : /PMC_SAM7S_USB.pl/1.4/Tue Feb 8 14:00:19 2005// -// CVS Reference : /RSTC_SAM7S.pl/1.2/Wed Jul 13 15:25:17 2005// -// CVS Reference : /UDP_4ept.pl/1.1/Thu Aug 3 12:26:00 2006// -// CVS Reference : /PWM_SAM7S.pl/1.1/Tue May 10 12:38:54 2005// -// CVS Reference : /AIC_6075B.pl/1.3/Fri May 20 14:21:42 2005// -// CVS Reference : /PIO_6057A.pl/1.2/Thu Feb 3 10:29:42 2005// -// CVS Reference : /RTTC_6081A.pl/1.2/Thu Nov 4 13:57:22 2004// -// CVS Reference : /PITC_6079A.pl/1.2/Thu Nov 4 13:56:22 2004// -// CVS Reference : /WDTC_6080A.pl/1.3/Thu Nov 4 13:58:52 2004// -// CVS Reference : /VREG_6085B.pl/1.1/Tue Feb 1 16:40:38 2005// -// CVS Reference : /PDC_6074C.pl/1.2/Thu Feb 3 09:02:11 2005// -// CVS Reference : /DBGU_6059D.pl/1.1/Mon Jan 31 13:54:41 2005// -// CVS Reference : /SPI_6088D.pl/1.3/Fri May 20 14:23:02 2005// -// CVS Reference : /US_6089C.pl/1.1/Mon Jan 31 13:56:02 2005// -// CVS Reference : /SSC_6078A.pl/1.1/Tue Jul 13 07:10:41 2004// -// CVS Reference : /TWI_6061A.pl/1.2/Fri Oct 27 11:40:48 2006// -// CVS Reference : /TC_6082A.pl/1.7/Wed Mar 9 16:31:51 2005// -// CVS Reference : /ADC_6051C.pl/1.1/Mon Jan 31 13:12:40 2005// -// CVS Reference : /EBI_SAM7SE512.pl/1.22/Fri Nov 18 17:47:47 2005// -// CVS Reference : /SMC_1783A.pl/1.4/Thu Feb 3 10:30:06 2005// -// CVS Reference : /SDRC_SAM7SE512.pl/1.7/Fri Jul 8 07:50:18 2005// -// CVS Reference : /HECC_SAM7SE512.pl/1.8/Tue Jul 12 06:31:42 2005// -// ---------------------------------------------------------------------------- - -#ifndef AT91SAM7S512_H -#define AT91SAM7S512_H - -#ifndef __ASSEMBLY__ -typedef volatile unsigned int AT91_REG;// Hardware register definition -#define AT91_CAST(a) (a) -#else -#define AT91_CAST(a) -#endif - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR System Peripherals -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_SYS { - AT91_REG AIC_SMR[32]; // Source Mode Register - AT91_REG AIC_SVR[32]; // Source Vector Register - AT91_REG AIC_IVR; // IRQ Vector Register - AT91_REG AIC_FVR; // FIQ Vector Register - AT91_REG AIC_ISR; // Interrupt Status Register - AT91_REG AIC_IPR; // Interrupt Pending Register - AT91_REG AIC_IMR; // Interrupt Mask Register - AT91_REG AIC_CISR; // Core Interrupt Status Register - AT91_REG Reserved0[2]; // - AT91_REG AIC_IECR; // Interrupt Enable Command Register - AT91_REG AIC_IDCR; // Interrupt Disable Command Register - AT91_REG AIC_ICCR; // Interrupt Clear Command Register - AT91_REG AIC_ISCR; // Interrupt Set Command Register - AT91_REG AIC_EOICR; // End of Interrupt Command Register - AT91_REG AIC_SPU; // Spurious Vector Register - AT91_REG AIC_DCR; // Debug Control Register (Protect) - AT91_REG Reserved1[1]; // - AT91_REG AIC_FFER; // Fast Forcing Enable Register - AT91_REG AIC_FFDR; // Fast Forcing Disable Register - AT91_REG AIC_FFSR; // Fast Forcing Status Register - AT91_REG Reserved2[45]; // - AT91_REG DBGU_CR; // Control Register - AT91_REG DBGU_MR; // Mode Register - AT91_REG DBGU_IER; // Interrupt Enable Register - AT91_REG DBGU_IDR; // Interrupt Disable Register - AT91_REG DBGU_IMR; // Interrupt Mask Register - AT91_REG DBGU_CSR; // Channel Status Register - AT91_REG DBGU_RHR; // Receiver Holding Register - AT91_REG DBGU_THR; // Transmitter Holding Register - AT91_REG DBGU_BRGR; // Baud Rate Generator Register - AT91_REG Reserved3[7]; // - AT91_REG DBGU_CIDR; // Chip ID Register - AT91_REG DBGU_EXID; // Chip ID Extension Register - AT91_REG DBGU_FNTR; // Force NTRST Register - AT91_REG Reserved4[45]; // - AT91_REG DBGU_RPR; // Receive Pointer Register - AT91_REG DBGU_RCR; // Receive Counter Register - AT91_REG DBGU_TPR; // Transmit Pointer Register - AT91_REG DBGU_TCR; // Transmit Counter Register - AT91_REG DBGU_RNPR; // Receive Next Pointer Register - AT91_REG DBGU_RNCR; // Receive Next Counter Register - AT91_REG DBGU_TNPR; // Transmit Next Pointer Register - AT91_REG DBGU_TNCR; // Transmit Next Counter Register - AT91_REG DBGU_PTCR; // PDC Transfer Control Register - AT91_REG DBGU_PTSR; // PDC Transfer Status Register - AT91_REG Reserved5[54]; // - AT91_REG PIOA_PER; // PIO Enable Register - AT91_REG PIOA_PDR; // PIO Disable Register - AT91_REG PIOA_PSR; // PIO Status Register - AT91_REG Reserved6[1]; // - AT91_REG PIOA_OER; // Output Enable Register - AT91_REG PIOA_ODR; // Output Disable Registerr - AT91_REG PIOA_OSR; // Output Status Register - AT91_REG Reserved7[1]; // - AT91_REG PIOA_IFER; // Input Filter Enable Register - AT91_REG PIOA_IFDR; // Input Filter Disable Register - AT91_REG PIOA_IFSR; // Input Filter Status Register - AT91_REG Reserved8[1]; // - AT91_REG PIOA_SODR; // Set Output Data Register - AT91_REG PIOA_CODR; // Clear Output Data Register - AT91_REG PIOA_ODSR; // Output Data Status Register - AT91_REG PIOA_PDSR; // Pin Data Status Register - AT91_REG PIOA_IER; // Interrupt Enable Register - AT91_REG PIOA_IDR; // Interrupt Disable Register - AT91_REG PIOA_IMR; // Interrupt Mask Register - AT91_REG PIOA_ISR; // Interrupt Status Register - AT91_REG PIOA_MDER; // Multi-driver Enable Register - AT91_REG PIOA_MDDR; // Multi-driver Disable Register - AT91_REG PIOA_MDSR; // Multi-driver Status Register - AT91_REG Reserved9[1]; // - AT91_REG PIOA_PPUDR; // Pull-up Disable Register - AT91_REG PIOA_PPUER; // Pull-up Enable Register - AT91_REG PIOA_PPUSR; // Pull-up Status Register - AT91_REG Reserved10[1]; // - AT91_REG PIOA_ASR; // Select A Register - AT91_REG PIOA_BSR; // Select B Register - AT91_REG PIOA_ABSR; // AB Select Status Register - AT91_REG Reserved11[9]; // - AT91_REG PIOA_OWER; // Output Write Enable Register - AT91_REG PIOA_OWDR; // Output Write Disable Register - AT91_REG PIOA_OWSR; // Output Write Status Register - AT91_REG Reserved12[469]; // - AT91_REG PMC_SCER; // System Clock Enable Register - AT91_REG PMC_SCDR; // System Clock Disable Register - AT91_REG PMC_SCSR; // System Clock Status Register - AT91_REG Reserved13[1]; // - AT91_REG PMC_PCER; // Peripheral Clock Enable Register - AT91_REG PMC_PCDR; // Peripheral Clock Disable Register - AT91_REG PMC_PCSR; // Peripheral Clock Status Register - AT91_REG Reserved14[1]; // - AT91_REG PMC_MOR; // Main Oscillator Register - AT91_REG PMC_MCFR; // Main Clock Frequency Register - AT91_REG Reserved15[1]; // - AT91_REG PMC_PLLR; // PLL Register - AT91_REG PMC_MCKR; // Master Clock Register - AT91_REG Reserved16[3]; // - AT91_REG PMC_PCKR[3]; // Programmable Clock Register - AT91_REG Reserved17[5]; // - AT91_REG PMC_IER; // Interrupt Enable Register - AT91_REG PMC_IDR; // Interrupt Disable Register - AT91_REG PMC_SR; // Status Register - AT91_REG PMC_IMR; // Interrupt Mask Register - AT91_REG Reserved18[36]; // - AT91_REG RSTC_RCR; // Reset Control Register - AT91_REG RSTC_RSR; // Reset Status Register - AT91_REG RSTC_RMR; // Reset Mode Register - AT91_REG Reserved19[5]; // - AT91_REG RTTC_RTMR; // Real-time Mode Register - AT91_REG RTTC_RTAR; // Real-time Alarm Register - AT91_REG RTTC_RTVR; // Real-time Value Register - AT91_REG RTTC_RTSR; // Real-time Status Register - AT91_REG PITC_PIMR; // Period Interval Mode Register - AT91_REG PITC_PISR; // Period Interval Status Register - AT91_REG PITC_PIVR; // Period Interval Value Register - AT91_REG PITC_PIIR; // Period Interval Image Register - AT91_REG WDTC_WDCR; // Watchdog Control Register - AT91_REG WDTC_WDMR; // Watchdog Mode Register - AT91_REG WDTC_WDSR; // Watchdog Status Register - AT91_REG Reserved20[5]; // - AT91_REG VREG_MR; // Voltage Regulator Mode Register -} AT91S_SYS, *AT91PS_SYS; -#else - -#endif - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Advanced Interrupt Controller -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_AIC { - AT91_REG AIC_SMR[32]; // Source Mode Register - AT91_REG AIC_SVR[32]; // Source Vector Register - AT91_REG AIC_IVR; // IRQ Vector Register - AT91_REG AIC_FVR; // FIQ Vector Register - AT91_REG AIC_ISR; // Interrupt Status Register - AT91_REG AIC_IPR; // Interrupt Pending Register - AT91_REG AIC_IMR; // Interrupt Mask Register - AT91_REG AIC_CISR; // Core Interrupt Status Register - AT91_REG Reserved0[2]; // - AT91_REG AIC_IECR; // Interrupt Enable Command Register - AT91_REG AIC_IDCR; // Interrupt Disable Command Register - AT91_REG AIC_ICCR; // Interrupt Clear Command Register - AT91_REG AIC_ISCR; // Interrupt Set Command Register - AT91_REG AIC_EOICR; // End of Interrupt Command Register - AT91_REG AIC_SPU; // Spurious Vector Register - AT91_REG AIC_DCR; // Debug Control Register (Protect) - AT91_REG Reserved1[1]; // - AT91_REG AIC_FFER; // Fast Forcing Enable Register - AT91_REG AIC_FFDR; // Fast Forcing Disable Register - AT91_REG AIC_FFSR; // Fast Forcing Status Register -} AT91S_AIC, *AT91PS_AIC; -#else -#define AIC_SMR (AT91_CAST(AT91_REG *) 0x00000000) // (AIC_SMR) Source Mode Register -#define AIC_SVR (AT91_CAST(AT91_REG *) 0x00000080) // (AIC_SVR) Source Vector Register -#define AIC_IVR (AT91_CAST(AT91_REG *) 0x00000100) // (AIC_IVR) IRQ Vector Register -#define AIC_FVR (AT91_CAST(AT91_REG *) 0x00000104) // (AIC_FVR) FIQ Vector Register -#define AIC_ISR (AT91_CAST(AT91_REG *) 0x00000108) // (AIC_ISR) Interrupt Status Register -#define AIC_IPR (AT91_CAST(AT91_REG *) 0x0000010C) // (AIC_IPR) Interrupt Pending Register -#define AIC_IMR (AT91_CAST(AT91_REG *) 0x00000110) // (AIC_IMR) Interrupt Mask Register -#define AIC_CISR (AT91_CAST(AT91_REG *) 0x00000114) // (AIC_CISR) Core Interrupt Status Register -#define AIC_IECR (AT91_CAST(AT91_REG *) 0x00000120) // (AIC_IECR) Interrupt Enable Command Register -#define AIC_IDCR (AT91_CAST(AT91_REG *) 0x00000124) // (AIC_IDCR) Interrupt Disable Command Register -#define AIC_ICCR (AT91_CAST(AT91_REG *) 0x00000128) // (AIC_ICCR) Interrupt Clear Command Register -#define AIC_ISCR (AT91_CAST(AT91_REG *) 0x0000012C) // (AIC_ISCR) Interrupt Set Command Register -#define AIC_EOICR (AT91_CAST(AT91_REG *) 0x00000130) // (AIC_EOICR) End of Interrupt Command Register -#define AIC_SPU (AT91_CAST(AT91_REG *) 0x00000134) // (AIC_SPU) Spurious Vector Register -#define AIC_DCR (AT91_CAST(AT91_REG *) 0x00000138) // (AIC_DCR) Debug Control Register (Protect) -#define AIC_FFER (AT91_CAST(AT91_REG *) 0x00000140) // (AIC_FFER) Fast Forcing Enable Register -#define AIC_FFDR (AT91_CAST(AT91_REG *) 0x00000144) // (AIC_FFDR) Fast Forcing Disable Register -#define AIC_FFSR (AT91_CAST(AT91_REG *) 0x00000148) // (AIC_FFSR) Fast Forcing Status Register - -#endif -// -------- AIC_SMR : (AIC Offset: 0x0) Control Register -------- -#define AT91C_AIC_PRIOR (0x7 << 0) // (AIC) Priority Level -#define AT91C_AIC_PRIOR_LOWEST (0x0) // (AIC) Lowest priority level -#define AT91C_AIC_PRIOR_HIGHEST (0x7) // (AIC) Highest priority level -#define AT91C_AIC_SRCTYPE (0x3 << 5) // (AIC) Interrupt Source Type -#define AT91C_AIC_SRCTYPE_INT_HIGH_LEVEL (0x0 << 5) // (AIC) Internal Sources Code Label High-level Sensitive -#define AT91C_AIC_SRCTYPE_EXT_LOW_LEVEL (0x0 << 5) // (AIC) External Sources Code Label Low-level Sensitive -#define AT91C_AIC_SRCTYPE_INT_POSITIVE_EDGE (0x1 << 5) // (AIC) Internal Sources Code Label Positive Edge triggered -#define AT91C_AIC_SRCTYPE_EXT_NEGATIVE_EDGE (0x1 << 5) // (AIC) External Sources Code Label Negative Edge triggered -#define AT91C_AIC_SRCTYPE_HIGH_LEVEL (0x2 << 5) // (AIC) Internal Or External Sources Code Label High-level Sensitive -#define AT91C_AIC_SRCTYPE_POSITIVE_EDGE (0x3 << 5) // (AIC) Internal Or External Sources Code Label Positive Edge triggered -// -------- AIC_CISR : (AIC Offset: 0x114) AIC Core Interrupt Status Register -------- -#define AT91C_AIC_NFIQ (0x1 << 0) // (AIC) NFIQ Status -#define AT91C_AIC_NIRQ (0x1 << 1) // (AIC) NIRQ Status -// -------- AIC_DCR : (AIC Offset: 0x138) AIC Debug Control Register (Protect) -------- -#define AT91C_AIC_DCR_PROT (0x1 << 0) // (AIC) Protection Mode -#define AT91C_AIC_DCR_GMSK (0x1 << 1) // (AIC) General Mask - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Peripheral DMA Controller -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_PDC { - AT91_REG PDC_RPR; // Receive Pointer Register - AT91_REG PDC_RCR; // Receive Counter Register - AT91_REG PDC_TPR; // Transmit Pointer Register - AT91_REG PDC_TCR; // Transmit Counter Register - AT91_REG PDC_RNPR; // Receive Next Pointer Register - AT91_REG PDC_RNCR; // Receive Next Counter Register - AT91_REG PDC_TNPR; // Transmit Next Pointer Register - AT91_REG PDC_TNCR; // Transmit Next Counter Register - AT91_REG PDC_PTCR; // PDC Transfer Control Register - AT91_REG PDC_PTSR; // PDC Transfer Status Register -} AT91S_PDC, *AT91PS_PDC; -#else -#define PDC_RPR (AT91_CAST(AT91_REG *) 0x00000000) // (PDC_RPR) Receive Pointer Register -#define PDC_RCR (AT91_CAST(AT91_REG *) 0x00000004) // (PDC_RCR) Receive Counter Register -#define PDC_TPR (AT91_CAST(AT91_REG *) 0x00000008) // (PDC_TPR) Transmit Pointer Register -#define PDC_TCR (AT91_CAST(AT91_REG *) 0x0000000C) // (PDC_TCR) Transmit Counter Register -#define PDC_RNPR (AT91_CAST(AT91_REG *) 0x00000010) // (PDC_RNPR) Receive Next Pointer Register -#define PDC_RNCR (AT91_CAST(AT91_REG *) 0x00000014) // (PDC_RNCR) Receive Next Counter Register -#define PDC_TNPR (AT91_CAST(AT91_REG *) 0x00000018) // (PDC_TNPR) Transmit Next Pointer Register -#define PDC_TNCR (AT91_CAST(AT91_REG *) 0x0000001C) // (PDC_TNCR) Transmit Next Counter Register -#define PDC_PTCR (AT91_CAST(AT91_REG *) 0x00000020) // (PDC_PTCR) PDC Transfer Control Register -#define PDC_PTSR (AT91_CAST(AT91_REG *) 0x00000024) // (PDC_PTSR) PDC Transfer Status Register - -#endif -// -------- PDC_PTCR : (PDC Offset: 0x20) PDC Transfer Control Register -------- -#define AT91C_PDC_RXTEN (0x1 << 0) // (PDC) Receiver Transfer Enable -#define AT91C_PDC_RXTDIS (0x1 << 1) // (PDC) Receiver Transfer Disable -#define AT91C_PDC_TXTEN (0x1 << 8) // (PDC) Transmitter Transfer Enable -#define AT91C_PDC_TXTDIS (0x1 << 9) // (PDC) Transmitter Transfer Disable -// -------- PDC_PTSR : (PDC Offset: 0x24) PDC Transfer Status Register -------- - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Debug Unit -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_DBGU { - AT91_REG DBGU_CR; // Control Register - AT91_REG DBGU_MR; // Mode Register - AT91_REG DBGU_IER; // Interrupt Enable Register - AT91_REG DBGU_IDR; // Interrupt Disable Register - AT91_REG DBGU_IMR; // Interrupt Mask Register - AT91_REG DBGU_CSR; // Channel Status Register - AT91_REG DBGU_RHR; // Receiver Holding Register - AT91_REG DBGU_THR; // Transmitter Holding Register - AT91_REG DBGU_BRGR; // Baud Rate Generator Register - AT91_REG Reserved0[7]; // - AT91_REG DBGU_CIDR; // Chip ID Register - AT91_REG DBGU_EXID; // Chip ID Extension Register - AT91_REG DBGU_FNTR; // Force NTRST Register - AT91_REG Reserved1[45]; // - AT91_REG DBGU_RPR; // Receive Pointer Register - AT91_REG DBGU_RCR; // Receive Counter Register - AT91_REG DBGU_TPR; // Transmit Pointer Register - AT91_REG DBGU_TCR; // Transmit Counter Register - AT91_REG DBGU_RNPR; // Receive Next Pointer Register - AT91_REG DBGU_RNCR; // Receive Next Counter Register - AT91_REG DBGU_TNPR; // Transmit Next Pointer Register - AT91_REG DBGU_TNCR; // Transmit Next Counter Register - AT91_REG DBGU_PTCR; // PDC Transfer Control Register - AT91_REG DBGU_PTSR; // PDC Transfer Status Register -} AT91S_DBGU, *AT91PS_DBGU; -#else -#define DBGU_CR (AT91_CAST(AT91_REG *) 0x00000000) // (DBGU_CR) Control Register -#define DBGU_MR (AT91_CAST(AT91_REG *) 0x00000004) // (DBGU_MR) Mode Register -#define DBGU_IER (AT91_CAST(AT91_REG *) 0x00000008) // (DBGU_IER) Interrupt Enable Register -#define DBGU_IDR (AT91_CAST(AT91_REG *) 0x0000000C) // (DBGU_IDR) Interrupt Disable Register -#define DBGU_IMR (AT91_CAST(AT91_REG *) 0x00000010) // (DBGU_IMR) Interrupt Mask Register -#define DBGU_CSR (AT91_CAST(AT91_REG *) 0x00000014) // (DBGU_CSR) Channel Status Register -#define DBGU_RHR (AT91_CAST(AT91_REG *) 0x00000018) // (DBGU_RHR) Receiver Holding Register -#define DBGU_THR (AT91_CAST(AT91_REG *) 0x0000001C) // (DBGU_THR) Transmitter Holding Register -#define DBGU_BRGR (AT91_CAST(AT91_REG *) 0x00000020) // (DBGU_BRGR) Baud Rate Generator Register -//#define DBGU_CIDR (AT91_CAST(AT91_REG *) 0x00000040) // (DBGU_CIDR) Chip ID Register -#define DBGU_EXID (AT91_CAST(AT91_REG *) 0x00000044) // (DBGU_EXID) Chip ID Extension Register -#define DBGU_FNTR (AT91_CAST(AT91_REG *) 0x00000048) // (DBGU_FNTR) Force NTRST Register - -#endif -// -------- DBGU_CR : (DBGU Offset: 0x0) Debug Unit Control Register -------- -#define AT91C_US_RSTRX (0x1 << 2) // (DBGU) Reset Receiver -#define AT91C_US_RSTTX (0x1 << 3) // (DBGU) Reset Transmitter -#define AT91C_US_RXEN (0x1 << 4) // (DBGU) Receiver Enable -#define AT91C_US_RXDIS (0x1 << 5) // (DBGU) Receiver Disable -#define AT91C_US_TXEN (0x1 << 6) // (DBGU) Transmitter Enable -#define AT91C_US_TXDIS (0x1 << 7) // (DBGU) Transmitter Disable -#define AT91C_US_RSTSTA (0x1 << 8) // (DBGU) Reset Status Bits -// -------- DBGU_MR : (DBGU Offset: 0x4) Debug Unit Mode Register -------- -#define AT91C_US_PAR (0x7 << 9) // (DBGU) Parity type -#define AT91C_US_PAR_EVEN (0x0 << 9) // (DBGU) Even Parity -#define AT91C_US_PAR_ODD (0x1 << 9) // (DBGU) Odd Parity -#define AT91C_US_PAR_SPACE (0x2 << 9) // (DBGU) Parity forced to 0 (Space) -#define AT91C_US_PAR_MARK (0x3 << 9) // (DBGU) Parity forced to 1 (Mark) -#define AT91C_US_PAR_NONE (0x4 << 9) // (DBGU) No Parity -#define AT91C_US_PAR_MULTI_DROP (0x6 << 9) // (DBGU) Multi-drop mode -#define AT91C_US_CHMODE (0x3 << 14) // (DBGU) Channel Mode -#define AT91C_US_CHMODE_NORMAL (0x0 << 14) // (DBGU) Normal Mode: The USART channel operates as an RX/TX USART. -#define AT91C_US_CHMODE_AUTO (0x1 << 14) // (DBGU) Automatic Echo: Receiver Data Input is connected to the TXD pin. -#define AT91C_US_CHMODE_LOCAL (0x2 << 14) // (DBGU) Local Loopback: Transmitter Output Signal is connected to Receiver Input Signal. -#define AT91C_US_CHMODE_REMOTE (0x3 << 14) // (DBGU) Remote Loopback: RXD pin is internally connected to TXD pin. -// -------- DBGU_IER : (DBGU Offset: 0x8) Debug Unit Interrupt Enable Register -------- -#define AT91C_US_RXRDY (0x1 << 0) // (DBGU) RXRDY Interrupt -#define AT91C_US_TXRDY (0x1 << 1) // (DBGU) TXRDY Interrupt -#define AT91C_US_ENDRX (0x1 << 3) // (DBGU) End of Receive Transfer Interrupt -#define AT91C_US_ENDTX (0x1 << 4) // (DBGU) End of Transmit Interrupt -#define AT91C_US_OVRE (0x1 << 5) // (DBGU) Overrun Interrupt -#define AT91C_US_FRAME (0x1 << 6) // (DBGU) Framing Error Interrupt -#define AT91C_US_PARE (0x1 << 7) // (DBGU) Parity Error Interrupt -#define AT91C_US_TXEMPTY (0x1 << 9) // (DBGU) TXEMPTY Interrupt -#define AT91C_US_TXBUFE (0x1 << 11) // (DBGU) TXBUFE Interrupt -#define AT91C_US_RXBUFF (0x1 << 12) // (DBGU) RXBUFF Interrupt -#define AT91C_US_COMM_TX (0x1 << 30) // (DBGU) COMM_TX Interrupt -#define AT91C_US_COMM_RX (0x1 << 31) // (DBGU) COMM_RX Interrupt -// -------- DBGU_IDR : (DBGU Offset: 0xc) Debug Unit Interrupt Disable Register -------- -// -------- DBGU_IMR : (DBGU Offset: 0x10) Debug Unit Interrupt Mask Register -------- -// -------- DBGU_CSR : (DBGU Offset: 0x14) Debug Unit Channel Status Register -------- -// -------- DBGU_FNTR : (DBGU Offset: 0x48) Debug Unit FORCE_NTRST Register -------- -#define AT91C_US_FORCE_NTRST (0x1 << 0) // (DBGU) Force NTRST in JTAG - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Parallel Input Output Controler -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_PIO { - AT91_REG PIO_PER; // PIO Enable Register - AT91_REG PIO_PDR; // PIO Disable Register - AT91_REG PIO_PSR; // PIO Status Register - AT91_REG Reserved0[1]; // - AT91_REG PIO_OER; // Output Enable Register - AT91_REG PIO_ODR; // Output Disable Registerr - AT91_REG PIO_OSR; // Output Status Register - AT91_REG Reserved1[1]; // - AT91_REG PIO_IFER; // Input Filter Enable Register - AT91_REG PIO_IFDR; // Input Filter Disable Register - AT91_REG PIO_IFSR; // Input Filter Status Register - AT91_REG Reserved2[1]; // - AT91_REG PIO_SODR; // Set Output Data Register - AT91_REG PIO_CODR; // Clear Output Data Register - AT91_REG PIO_ODSR; // Output Data Status Register - AT91_REG PIO_PDSR; // Pin Data Status Register - AT91_REG PIO_IER; // Interrupt Enable Register - AT91_REG PIO_IDR; // Interrupt Disable Register - AT91_REG PIO_IMR; // Interrupt Mask Register - AT91_REG PIO_ISR; // Interrupt Status Register - AT91_REG PIO_MDER; // Multi-driver Enable Register - AT91_REG PIO_MDDR; // Multi-driver Disable Register - AT91_REG PIO_MDSR; // Multi-driver Status Register - AT91_REG Reserved3[1]; // - AT91_REG PIO_PPUDR; // Pull-up Disable Register - AT91_REG PIO_PPUER; // Pull-up Enable Register - AT91_REG PIO_PPUSR; // Pull-up Status Register - AT91_REG Reserved4[1]; // - AT91_REG PIO_ASR; // Select A Register - AT91_REG PIO_BSR; // Select B Register - AT91_REG PIO_ABSR; // AB Select Status Register - AT91_REG Reserved5[9]; // - AT91_REG PIO_OWER; // Output Write Enable Register - AT91_REG PIO_OWDR; // Output Write Disable Register - AT91_REG PIO_OWSR; // Output Write Status Register -} AT91S_PIO, *AT91PS_PIO; -#else -#define PIO_PER (AT91_CAST(AT91_REG *) 0x00000000) // (PIO_PER) PIO Enable Register -#define PIO_PDR (AT91_CAST(AT91_REG *) 0x00000004) // (PIO_PDR) PIO Disable Register -#define PIO_PSR (AT91_CAST(AT91_REG *) 0x00000008) // (PIO_PSR) PIO Status Register -#define PIO_OER (AT91_CAST(AT91_REG *) 0x00000010) // (PIO_OER) Output Enable Register -#define PIO_ODR (AT91_CAST(AT91_REG *) 0x00000014) // (PIO_ODR) Output Disable Register -#define PIO_OSR (AT91_CAST(AT91_REG *) 0x00000018) // (PIO_OSR) Output Status Register -#define PIO_IFER (AT91_CAST(AT91_REG *) 0x00000020) // (PIO_IFER) Input Filter Enable Register -#define PIO_IFDR (AT91_CAST(AT91_REG *) 0x00000024) // (PIO_IFDR) Input Filter Disable Register -#define PIO_IFSR (AT91_CAST(AT91_REG *) 0x00000028) // (PIO_IFSR) Input Filter Status Register -#define PIO_SODR (AT91_CAST(AT91_REG *) 0x00000030) // (PIO_SODR) Set Output Data Register -#define PIO_CODR (AT91_CAST(AT91_REG *) 0x00000034) // (PIO_CODR) Clear Output Data Register -#define PIO_ODSR (AT91_CAST(AT91_REG *) 0x00000038) // (PIO_ODSR) Output Data Status Register -#define PIO_PDSR (AT91_CAST(AT91_REG *) 0x0000003C) // (PIO_PDSR) Pin Data Status Register -#define PIO_IER (AT91_CAST(AT91_REG *) 0x00000040) // (PIO_IER) Interrupt Enable Register -#define PIO_IDR (AT91_CAST(AT91_REG *) 0x00000044) // (PIO_IDR) Interrupt Disable Register -#define PIO_IMR (AT91_CAST(AT91_REG *) 0x00000048) // (PIO_IMR) Interrupt Mask Register -#define PIO_ISR (AT91_CAST(AT91_REG *) 0x0000004C) // (PIO_ISR) Interrupt Status Register -#define PIO_MDER (AT91_CAST(AT91_REG *) 0x00000050) // (PIO_MDER) Multi-driver Enable Register -#define PIO_MDDR (AT91_CAST(AT91_REG *) 0x00000054) // (PIO_MDDR) Multi-driver Disable Register -#define PIO_MDSR (AT91_CAST(AT91_REG *) 0x00000058) // (PIO_MDSR) Multi-driver Status Register -#define PIO_PPUDR (AT91_CAST(AT91_REG *) 0x00000060) // (PIO_PPUDR) Pull-up Disable Register -#define PIO_PPUER (AT91_CAST(AT91_REG *) 0x00000064) // (PIO_PPUER) Pull-up Enable Register -#define PIO_PPUSR (AT91_CAST(AT91_REG *) 0x00000068) // (PIO_PPUSR) Pull-up Status Register -#define PIO_ASR (AT91_CAST(AT91_REG *) 0x00000070) // (PIO_ASR) Select A Register -#define PIO_BSR (AT91_CAST(AT91_REG *) 0x00000074) // (PIO_BSR) Select B Register -#define PIO_ABSR (AT91_CAST(AT91_REG *) 0x00000078) // (PIO_ABSR) AB Select Status Register -#define PIO_OWER (AT91_CAST(AT91_REG *) 0x000000A0) // (PIO_OWER) Output Write Enable Register -#define PIO_OWDR (AT91_CAST(AT91_REG *) 0x000000A4) // (PIO_OWDR) Output Write Disable Register -#define PIO_OWSR (AT91_CAST(AT91_REG *) 0x000000A8) // (PIO_OWSR) Output Write Status Register - -#endif - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Clock Generator Controler -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_CKGR { - AT91_REG CKGR_MOR; // Main Oscillator Register - AT91_REG CKGR_MCFR; // Main Clock Frequency Register - AT91_REG Reserved0[1]; // - AT91_REG CKGR_PLLR; // PLL Register -} AT91S_CKGR, *AT91PS_CKGR; -#else -#define CKGR_MOR (AT91_CAST(AT91_REG *) 0x00000000) // (CKGR_MOR) Main Oscillator Register -#define CKGR_MCFR (AT91_CAST(AT91_REG *) 0x00000004) // (CKGR_MCFR) Main Clock Frequency Register -#define CKGR_PLLR (AT91_CAST(AT91_REG *) 0x0000000C) // (CKGR_PLLR) PLL Register - -#endif -// -------- CKGR_MOR : (CKGR Offset: 0x0) Main Oscillator Register -------- -#define AT91C_CKGR_MOSCEN (0x1 << 0) // (CKGR) Main Oscillator Enable -#define AT91C_CKGR_OSCBYPASS (0x1 << 1) // (CKGR) Main Oscillator Bypass -#define AT91C_CKGR_OSCOUNT (0xFF << 8) // (CKGR) Main Oscillator Start-up Time -// -------- CKGR_MCFR : (CKGR Offset: 0x4) Main Clock Frequency Register -------- -#define AT91C_CKGR_MAINF (0xFFFF << 0) // (CKGR) Main Clock Frequency -#define AT91C_CKGR_MAINRDY (0x1 << 16) // (CKGR) Main Clock Ready -// -------- CKGR_PLLR : (CKGR Offset: 0xc) PLL B Register -------- -#define AT91C_CKGR_DIV (0xFF << 0) // (CKGR) Divider Selected -#define AT91C_CKGR_DIV_0 (0x0) // (CKGR) Divider output is 0 -#define AT91C_CKGR_DIV_BYPASS (0x1) // (CKGR) Divider is bypassed -#define AT91C_CKGR_PLLCOUNT (0x3F << 8) // (CKGR) PLL Counter -#define AT91C_CKGR_OUT (0x3 << 14) // (CKGR) PLL Output Frequency Range -#define AT91C_CKGR_OUT_0 (0x0 << 14) // (CKGR) Please refer to the PLL datasheet -#define AT91C_CKGR_OUT_1 (0x1 << 14) // (CKGR) Please refer to the PLL datasheet -#define AT91C_CKGR_OUT_2 (0x2 << 14) // (CKGR) Please refer to the PLL datasheet -#define AT91C_CKGR_OUT_3 (0x3 << 14) // (CKGR) Please refer to the PLL datasheet -#define AT91C_CKGR_MUL (0x7FF << 16) // (CKGR) PLL Multiplier -#define AT91C_CKGR_USBDIV (0x3 << 28) // (CKGR) Divider for USB Clocks -#define AT91C_CKGR_USBDIV_0 (0x0 << 28) // (CKGR) Divider output is PLL clock output -#define AT91C_CKGR_USBDIV_1 (0x1 << 28) // (CKGR) Divider output is PLL clock output divided by 2 -#define AT91C_CKGR_USBDIV_2 (0x2 << 28) // (CKGR) Divider output is PLL clock output divided by 4 - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Power Management Controler -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_PMC { - AT91_REG PMC_SCER; // System Clock Enable Register - AT91_REG PMC_SCDR; // System Clock Disable Register - AT91_REG PMC_SCSR; // System Clock Status Register - AT91_REG Reserved0[1]; // - AT91_REG PMC_PCER; // Peripheral Clock Enable Register - AT91_REG PMC_PCDR; // Peripheral Clock Disable Register - AT91_REG PMC_PCSR; // Peripheral Clock Status Register - AT91_REG Reserved1[1]; // - AT91_REG PMC_MOR; // Main Oscillator Register - AT91_REG PMC_MCFR; // Main Clock Frequency Register - AT91_REG Reserved2[1]; // - AT91_REG PMC_PLLR; // PLL Register - AT91_REG PMC_MCKR; // Master Clock Register - AT91_REG Reserved3[3]; // - AT91_REG PMC_PCKR[3]; // Programmable Clock Register - AT91_REG Reserved4[5]; // - AT91_REG PMC_IER; // Interrupt Enable Register - AT91_REG PMC_IDR; // Interrupt Disable Register - AT91_REG PMC_SR; // Status Register - AT91_REG PMC_IMR; // Interrupt Mask Register -} AT91S_PMC, *AT91PS_PMC; -#else -#define PMC_SCER (AT91_CAST(AT91_REG *) 0x00000000) // (PMC_SCER) System Clock Enable Register -#define PMC_SCDR (AT91_CAST(AT91_REG *) 0x00000004) // (PMC_SCDR) System Clock Disable Register -#define PMC_SCSR (AT91_CAST(AT91_REG *) 0x00000008) // (PMC_SCSR) System Clock Status Register -#define PMC_PCER (AT91_CAST(AT91_REG *) 0x00000010) // (PMC_PCER) Peripheral Clock Enable Register -#define PMC_PCDR (AT91_CAST(AT91_REG *) 0x00000014) // (PMC_PCDR) Peripheral Clock Disable Register -#define PMC_PCSR (AT91_CAST(AT91_REG *) 0x00000018) // (PMC_PCSR) Peripheral Clock Status Register -#define PMC_MCKR (AT91_CAST(AT91_REG *) 0x00000030) // (PMC_MCKR) Master Clock Register -#define PMC_PCKR (AT91_CAST(AT91_REG *) 0x00000040) // (PMC_PCKR) Programmable Clock Register -#define PMC_IER (AT91_CAST(AT91_REG *) 0x00000060) // (PMC_IER) Interrupt Enable Register -#define PMC_IDR (AT91_CAST(AT91_REG *) 0x00000064) // (PMC_IDR) Interrupt Disable Register -#define PMC_SR (AT91_CAST(AT91_REG *) 0x00000068) // (PMC_SR) Status Register -#define PMC_IMR (AT91_CAST(AT91_REG *) 0x0000006C) // (PMC_IMR) Interrupt Mask Register - -#endif -// -------- PMC_SCER : (PMC Offset: 0x0) System Clock Enable Register -------- -#define AT91C_PMC_PCK (0x1 << 0) // (PMC) Processor Clock -#define AT91C_PMC_UDP (0x1 << 7) // (PMC) USB Device Port Clock -#define AT91C_PMC_PCK0 (0x1 << 8) // (PMC) Programmable Clock Output -#define AT91C_PMC_PCK1 (0x1 << 9) // (PMC) Programmable Clock Output -#define AT91C_PMC_PCK2 (0x1 << 10) // (PMC) Programmable Clock Output -// -------- PMC_SCDR : (PMC Offset: 0x4) System Clock Disable Register -------- -// -------- PMC_SCSR : (PMC Offset: 0x8) System Clock Status Register -------- -// -------- CKGR_MOR : (PMC Offset: 0x20) Main Oscillator Register -------- -// -------- CKGR_MCFR : (PMC Offset: 0x24) Main Clock Frequency Register -------- -// -------- CKGR_PLLR : (PMC Offset: 0x2c) PLL B Register -------- -// -------- PMC_MCKR : (PMC Offset: 0x30) Master Clock Register -------- -#define AT91C_PMC_CSS (0x3 << 0) // (PMC) Programmable Clock Selection -#define AT91C_PMC_CSS_SLOW_CLK (0x0) // (PMC) Slow Clock is selected -#define AT91C_PMC_CSS_MAIN_CLK (0x1) // (PMC) Main Clock is selected -#define AT91C_PMC_CSS_PLL_CLK (0x3) // (PMC) Clock from PLL is selected -#define AT91C_PMC_PRES (0x7 << 2) // (PMC) Programmable Clock Prescaler -#define AT91C_PMC_PRES_CLK (0x0 << 2) // (PMC) Selected clock -#define AT91C_PMC_PRES_CLK_2 (0x1 << 2) // (PMC) Selected clock divided by 2 -#define AT91C_PMC_PRES_CLK_4 (0x2 << 2) // (PMC) Selected clock divided by 4 -#define AT91C_PMC_PRES_CLK_8 (0x3 << 2) // (PMC) Selected clock divided by 8 -#define AT91C_PMC_PRES_CLK_16 (0x4 << 2) // (PMC) Selected clock divided by 16 -#define AT91C_PMC_PRES_CLK_32 (0x5 << 2) // (PMC) Selected clock divided by 32 -#define AT91C_PMC_PRES_CLK_64 (0x6 << 2) // (PMC) Selected clock divided by 64 -// -------- PMC_PCKR : (PMC Offset: 0x40) Programmable Clock Register -------- -// -------- PMC_IER : (PMC Offset: 0x60) PMC Interrupt Enable Register -------- -#define AT91C_PMC_MOSCS (0x1 << 0) // (PMC) MOSC Status/Enable/Disable/Mask -#define AT91C_PMC_LOCK (0x1 << 2) // (PMC) PLL Status/Enable/Disable/Mask -#define AT91C_PMC_MCKRDY (0x1 << 3) // (PMC) MCK_RDY Status/Enable/Disable/Mask -#define AT91C_PMC_PCK0RDY (0x1 << 8) // (PMC) PCK0_RDY Status/Enable/Disable/Mask -#define AT91C_PMC_PCK1RDY (0x1 << 9) // (PMC) PCK1_RDY Status/Enable/Disable/Mask -#define AT91C_PMC_PCK2RDY (0x1 << 10) // (PMC) PCK2_RDY Status/Enable/Disable/Mask -// -------- PMC_IDR : (PMC Offset: 0x64) PMC Interrupt Disable Register -------- -// -------- PMC_SR : (PMC Offset: 0x68) PMC Status Register -------- -// -------- PMC_IMR : (PMC Offset: 0x6c) PMC Interrupt Mask Register -------- - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Reset Controller Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_RSTC { - AT91_REG RSTC_RCR; // Reset Control Register - AT91_REG RSTC_RSR; // Reset Status Register - AT91_REG RSTC_RMR; // Reset Mode Register -} AT91S_RSTC, *AT91PS_RSTC; -#else -#define RSTC_RCR (AT91_CAST(AT91_REG *) 0x00000000) // (RSTC_RCR) Reset Control Register -#define RSTC_RSR (AT91_CAST(AT91_REG *) 0x00000004) // (RSTC_RSR) Reset Status Register -#define RSTC_RMR (AT91_CAST(AT91_REG *) 0x00000008) // (RSTC_RMR) Reset Mode Register - -#endif -// -------- RSTC_RCR : (RSTC Offset: 0x0) Reset Control Register -------- -#define AT91C_RSTC_PROCRST (0x1 << 0) // (RSTC) Processor Reset -#define AT91C_RSTC_PERRST (0x1 << 2) // (RSTC) Peripheral Reset -#define AT91C_RSTC_EXTRST (0x1 << 3) // (RSTC) External Reset -#define AT91C_RSTC_KEY (0xFF << 24) // (RSTC) Password -// -------- RSTC_RSR : (RSTC Offset: 0x4) Reset Status Register -------- -#define AT91C_RSTC_URSTS (0x1 << 0) // (RSTC) User Reset Status -#define AT91C_RSTC_BODSTS (0x1 << 1) // (RSTC) Brownout Detection Status -#define AT91C_RSTC_RSTTYP (0x7 << 8) // (RSTC) Reset Type -#define AT91C_RSTC_RSTTYP_POWERUP (0x0 << 8) // (RSTC) Power-up Reset. VDDCORE rising. -#define AT91C_RSTC_RSTTYP_WAKEUP (0x1 << 8) // (RSTC) WakeUp Reset. VDDCORE rising. -#define AT91C_RSTC_RSTTYP_WATCHDOG (0x2 << 8) // (RSTC) Watchdog Reset. Watchdog overflow occured. -#define AT91C_RSTC_RSTTYP_SOFTWARE (0x3 << 8) // (RSTC) Software Reset. Processor reset required by the software. -#define AT91C_RSTC_RSTTYP_USER (0x4 << 8) // (RSTC) User Reset. NRST pin detected low. -#define AT91C_RSTC_RSTTYP_BROWNOUT (0x5 << 8) // (RSTC) Brownout Reset occured. -#define AT91C_RSTC_NRSTL (0x1 << 16) // (RSTC) NRST pin level -#define AT91C_RSTC_SRCMP (0x1 << 17) // (RSTC) Software Reset Command in Progress. -// -------- RSTC_RMR : (RSTC Offset: 0x8) Reset Mode Register -------- -#define AT91C_RSTC_URSTEN (0x1 << 0) // (RSTC) User Reset Enable -#define AT91C_RSTC_URSTIEN (0x1 << 4) // (RSTC) User Reset Interrupt Enable -#define AT91C_RSTC_ERSTL (0xF << 8) // (RSTC) User Reset Length -#define AT91C_RSTC_BODIEN (0x1 << 16) // (RSTC) Brownout Detection Interrupt Enable - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Real Time Timer Controller Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_RTTC { - AT91_REG RTTC_RTMR; // Real-time Mode Register - AT91_REG RTTC_RTAR; // Real-time Alarm Register - AT91_REG RTTC_RTVR; // Real-time Value Register - AT91_REG RTTC_RTSR; // Real-time Status Register -} AT91S_RTTC, *AT91PS_RTTC; -#else -#define RTTC_RTMR (AT91_CAST(AT91_REG *) 0x00000000) // (RTTC_RTMR) Real-time Mode Register -#define RTTC_RTAR (AT91_CAST(AT91_REG *) 0x00000004) // (RTTC_RTAR) Real-time Alarm Register -#define RTTC_RTVR (AT91_CAST(AT91_REG *) 0x00000008) // (RTTC_RTVR) Real-time Value Register -#define RTTC_RTSR (AT91_CAST(AT91_REG *) 0x0000000C) // (RTTC_RTSR) Real-time Status Register - -#endif -// -------- RTTC_RTMR : (RTTC Offset: 0x0) Real-time Mode Register -------- -#define AT91C_RTTC_RTPRES (0xFFFF << 0) // (RTTC) Real-time Timer Prescaler Value -#define AT91C_RTTC_ALMIEN (0x1 << 16) // (RTTC) Alarm Interrupt Enable -#define AT91C_RTTC_RTTINCIEN (0x1 << 17) // (RTTC) Real Time Timer Increment Interrupt Enable -#define AT91C_RTTC_RTTRST (0x1 << 18) // (RTTC) Real Time Timer Restart -// -------- RTTC_RTAR : (RTTC Offset: 0x4) Real-time Alarm Register -------- -#define AT91C_RTTC_ALMV (0x0 << 0) // (RTTC) Alarm Value -// -------- RTTC_RTVR : (RTTC Offset: 0x8) Current Real-time Value Register -------- -#define AT91C_RTTC_CRTV (0x0 << 0) // (RTTC) Current Real-time Value -// -------- RTTC_RTSR : (RTTC Offset: 0xc) Real-time Status Register -------- -#define AT91C_RTTC_ALMS (0x1 << 0) // (RTTC) Real-time Alarm Status -#define AT91C_RTTC_RTTINC (0x1 << 1) // (RTTC) Real-time Timer Increment - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Periodic Interval Timer Controller Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_PITC { - AT91_REG PITC_PIMR; // Period Interval Mode Register - AT91_REG PITC_PISR; // Period Interval Status Register - AT91_REG PITC_PIVR; // Period Interval Value Register - AT91_REG PITC_PIIR; // Period Interval Image Register -} AT91S_PITC, *AT91PS_PITC; -#else -#define PITC_PIMR (AT91_CAST(AT91_REG *) 0x00000000) // (PITC_PIMR) Period Interval Mode Register -#define PITC_PISR (AT91_CAST(AT91_REG *) 0x00000004) // (PITC_PISR) Period Interval Status Register -#define PITC_PIVR (AT91_CAST(AT91_REG *) 0x00000008) // (PITC_PIVR) Period Interval Value Register -#define PITC_PIIR (AT91_CAST(AT91_REG *) 0x0000000C) // (PITC_PIIR) Period Interval Image Register - -#endif -// -------- PITC_PIMR : (PITC Offset: 0x0) Periodic Interval Mode Register -------- -#define AT91C_PITC_PIV (0xFFFFF << 0) // (PITC) Periodic Interval Value -#define AT91C_PITC_PITEN (0x1 << 24) // (PITC) Periodic Interval Timer Enabled -#define AT91C_PITC_PITIEN (0x1 << 25) // (PITC) Periodic Interval Timer Interrupt Enable -// -------- PITC_PISR : (PITC Offset: 0x4) Periodic Interval Status Register -------- -#define AT91C_PITC_PITS (0x1 << 0) // (PITC) Periodic Interval Timer Status -// -------- PITC_PIVR : (PITC Offset: 0x8) Periodic Interval Value Register -------- -#define AT91C_PITC_CPIV (0xFFFFF << 0) // (PITC) Current Periodic Interval Value -#define AT91C_PITC_PICNT (0xFFF << 20) // (PITC) Periodic Interval Counter -// -------- PITC_PIIR : (PITC Offset: 0xc) Periodic Interval Image Register -------- - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Watchdog Timer Controller Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_WDTC { - AT91_REG WDTC_WDCR; // Watchdog Control Register - AT91_REG WDTC_WDMR; // Watchdog Mode Register - AT91_REG WDTC_WDSR; // Watchdog Status Register -} AT91S_WDTC, *AT91PS_WDTC; -#else -#define WDTC_WDCR (AT91_CAST(AT91_REG *) 0x00000000) // (WDTC_WDCR) Watchdog Control Register -#define WDTC_WDMR (AT91_CAST(AT91_REG *) 0x00000004) // (WDTC_WDMR) Watchdog Mode Register -#define WDTC_WDSR (AT91_CAST(AT91_REG *) 0x00000008) // (WDTC_WDSR) Watchdog Status Register - -#endif -// -------- WDTC_WDCR : (WDTC Offset: 0x0) Periodic Interval Image Register -------- -#define AT91C_WDTC_WDRSTT (0x1 << 0) // (WDTC) Watchdog Restart -#define AT91C_WDTC_KEY (0xFF << 24) // (WDTC) Watchdog KEY Password -// -------- WDTC_WDMR : (WDTC Offset: 0x4) Watchdog Mode Register -------- -#define AT91C_WDTC_WDV (0xFFF << 0) // (WDTC) Watchdog Timer Restart -#define AT91C_WDTC_WDFIEN (0x1 << 12) // (WDTC) Watchdog Fault Interrupt Enable -#define AT91C_WDTC_WDRSTEN (0x1 << 13) // (WDTC) Watchdog Reset Enable -#define AT91C_WDTC_WDRPROC (0x1 << 14) // (WDTC) Watchdog Timer Restart -#define AT91C_WDTC_WDDIS (0x1 << 15) // (WDTC) Watchdog Disable -#define AT91C_WDTC_WDD (0xFFF << 16) // (WDTC) Watchdog Delta Value -#define AT91C_WDTC_WDDBGHLT (0x1 << 28) // (WDTC) Watchdog Debug Halt -#define AT91C_WDTC_WDIDLEHLT (0x1 << 29) // (WDTC) Watchdog Idle Halt -// -------- WDTC_WDSR : (WDTC Offset: 0x8) Watchdog Status Register -------- -#define AT91C_WDTC_WDUNF (0x1 << 0) // (WDTC) Watchdog Underflow -#define AT91C_WDTC_WDERR (0x1 << 1) // (WDTC) Watchdog Error - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Voltage Regulator Mode Controller Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_VREG { - AT91_REG VREG_MR; // Voltage Regulator Mode Register -} AT91S_VREG, *AT91PS_VREG; -#else -#define VREG_MR (AT91_CAST(AT91_REG *) 0x00000000) // (VREG_MR) Voltage Regulator Mode Register - -#endif -// -------- VREG_MR : (VREG Offset: 0x0) Voltage Regulator Mode Register -------- -#define AT91C_VREG_PSTDBY (0x1 << 0) // (VREG) Voltage Regulator Power Standby Mode - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Embedded Flash Controller Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_EFC { - AT91_REG EFC_FMR; // MC Flash Mode Register - AT91_REG EFC_FCR; // MC Flash Command Register - AT91_REG EFC_FSR; // MC Flash Status Register - AT91_REG EFC_VR; // MC Flash Version Register -} AT91S_EFC, *AT91PS_EFC; -#else -#define MC_FMR (AT91_CAST(AT91_REG *) 0x00000000) // (MC_FMR) MC Flash Mode Register -#define MC_FCR (AT91_CAST(AT91_REG *) 0x00000004) // (MC_FCR) MC Flash Command Register -#define MC_FSR (AT91_CAST(AT91_REG *) 0x00000008) // (MC_FSR) MC Flash Status Register -#define MC_VR (AT91_CAST(AT91_REG *) 0x0000000C) // (MC_VR) MC Flash Version Register - -#endif -// -------- MC_FMR : (EFC Offset: 0x0) MC Flash Mode Register -------- -#define AT91C_MC_FRDY (0x1 << 0) // (EFC) Flash Ready -#define AT91C_MC_LOCKE (0x1 << 2) // (EFC) Lock Error -#define AT91C_MC_PROGE (0x1 << 3) // (EFC) Programming Error -#define AT91C_MC_NEBP (0x1 << 7) // (EFC) No Erase Before Programming -#define AT91C_MC_FWS (0x3 << 8) // (EFC) Flash Wait State -#define AT91C_MC_FWS_0FWS (0x0 << 8) // (EFC) 1 cycle for Read, 2 for Write operations -#define AT91C_MC_FWS_1FWS (0x1 << 8) // (EFC) 2 cycles for Read, 3 for Write operations -#define AT91C_MC_FWS_2FWS (0x2 << 8) // (EFC) 3 cycles for Read, 4 for Write operations -#define AT91C_MC_FWS_3FWS (0x3 << 8) // (EFC) 4 cycles for Read, 4 for Write operations -#define AT91C_MC_FMCN (0xFF << 16) // (EFC) Flash Microsecond Cycle Number -// -------- MC_FCR : (EFC Offset: 0x4) MC Flash Command Register -------- -#define AT91C_MC_FCMD (0xF << 0) // (EFC) Flash Command -#define AT91C_MC_FCMD_START_PROG (0x1) // (EFC) Starts the programming of th epage specified by PAGEN. -#define AT91C_MC_FCMD_LOCK (0x2) // (EFC) Starts a lock sequence of the sector defined by the bits 4 to 7 of the field PAGEN. -#define AT91C_MC_FCMD_PROG_AND_LOCK (0x3) // (EFC) The lock sequence automatically happens after the programming sequence is completed. -#define AT91C_MC_FCMD_UNLOCK (0x4) // (EFC) Starts an unlock sequence of the sector defined by the bits 4 to 7 of the field PAGEN. -#define AT91C_MC_FCMD_ERASE_ALL (0x8) // (EFC) Starts the erase of the entire flash.If at least a page is locked, the command is cancelled. -#define AT91C_MC_FCMD_SET_GP_NVM (0xB) // (EFC) Set General Purpose NVM bits. -#define AT91C_MC_FCMD_CLR_GP_NVM (0xD) // (EFC) Clear General Purpose NVM bits. -#define AT91C_MC_FCMD_SET_SECURITY (0xF) // (EFC) Set Security Bit. -#define AT91C_MC_PAGEN (0x3FF << 8) // (EFC) Page Number -#define AT91C_MC_KEY (0xFF << 24) // (EFC) Writing Protect Key -// -------- MC_FSR : (EFC Offset: 0x8) MC Flash Command Register -------- -#define AT91C_MC_SECURITY (0x1 << 4) // (EFC) Security Bit Status -#define AT91C_MC_GPNVM0 (0x1 << 8) // (EFC) Sector 0 Lock Status -#define AT91C_MC_GPNVM1 (0x1 << 9) // (EFC) Sector 1 Lock Status -#define AT91C_MC_GPNVM2 (0x1 << 10) // (EFC) Sector 2 Lock Status -#define AT91C_MC_GPNVM3 (0x1 << 11) // (EFC) Sector 3 Lock Status -#define AT91C_MC_GPNVM4 (0x1 << 12) // (EFC) Sector 4 Lock Status -#define AT91C_MC_GPNVM5 (0x1 << 13) // (EFC) Sector 5 Lock Status -#define AT91C_MC_GPNVM6 (0x1 << 14) // (EFC) Sector 6 Lock Status -#define AT91C_MC_GPNVM7 (0x1 << 15) // (EFC) Sector 7 Lock Status -#define AT91C_MC_LOCKS0 (0x1 << 16) // (EFC) Sector 0 Lock Status -#define AT91C_MC_LOCKS1 (0x1 << 17) // (EFC) Sector 1 Lock Status -#define AT91C_MC_LOCKS2 (0x1 << 18) // (EFC) Sector 2 Lock Status -#define AT91C_MC_LOCKS3 (0x1 << 19) // (EFC) Sector 3 Lock Status -#define AT91C_MC_LOCKS4 (0x1 << 20) // (EFC) Sector 4 Lock Status -#define AT91C_MC_LOCKS5 (0x1 << 21) // (EFC) Sector 5 Lock Status -#define AT91C_MC_LOCKS6 (0x1 << 22) // (EFC) Sector 6 Lock Status -#define AT91C_MC_LOCKS7 (0x1 << 23) // (EFC) Sector 7 Lock Status -#define AT91C_MC_LOCKS8 (0x1 << 24) // (EFC) Sector 8 Lock Status -#define AT91C_MC_LOCKS9 (0x1 << 25) // (EFC) Sector 9 Lock Status -#define AT91C_MC_LOCKS10 (0x1 << 26) // (EFC) Sector 10 Lock Status -#define AT91C_MC_LOCKS11 (0x1 << 27) // (EFC) Sector 11 Lock Status -#define AT91C_MC_LOCKS12 (0x1 << 28) // (EFC) Sector 12 Lock Status -#define AT91C_MC_LOCKS13 (0x1 << 29) // (EFC) Sector 13 Lock Status -#define AT91C_MC_LOCKS14 (0x1 << 30) // (EFC) Sector 14 Lock Status -#define AT91C_MC_LOCKS15 (0x1 << 31) // (EFC) Sector 15 Lock Status -// -------- EFC_VR : (EFC Offset: 0xc) EFC version register -------- -#define AT91C_EFC_VERSION (0xFFF << 0) // (EFC) EFC version number -#define AT91C_EFC_MFN (0x7 << 16) // (EFC) EFC MFN - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Memory Controller Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_MC { - AT91_REG MC_RCR; // MC Remap Control Register - AT91_REG MC_ASR; // MC Abort Status Register - AT91_REG MC_AASR; // MC Abort Address Status Register - AT91_REG Reserved0[1]; // - AT91_REG MC_PUIA[16]; // MC Protection Unit Area - AT91_REG MC_PUP; // MC Protection Unit Peripherals - AT91_REG MC_PUER; // MC Protection Unit Enable Register - AT91_REG Reserved1[2]; // - AT91_REG MC0_FMR; // MC Flash Mode Register - AT91_REG MC0_FCR; // MC Flash Command Register - AT91_REG MC0_FSR; // MC Flash Status Register - AT91_REG MC0_VR; // MC Flash Version Register - AT91_REG MC1_FMR; // MC Flash Mode Register - AT91_REG MC1_FCR; // MC Flash Command Register - AT91_REG MC1_FSR; // MC Flash Status Register - AT91_REG MC1_VR; // MC Flash Version Register -} AT91S_MC, *AT91PS_MC; -#else -#define MC_RCR (AT91_CAST(AT91_REG *) 0x00000000) // (MC_RCR) MC Remap Control Register -#define MC_ASR (AT91_CAST(AT91_REG *) 0x00000004) // (MC_ASR) MC Abort Status Register -#define MC_AASR (AT91_CAST(AT91_REG *) 0x00000008) // (MC_AASR) MC Abort Address Status Register -#define MC_PUIA (AT91_CAST(AT91_REG *) 0x00000010) // (MC_PUIA) MC Protection Unit Area -#define MC_PUP (AT91_CAST(AT91_REG *) 0x00000050) // (MC_PUP) MC Protection Unit Peripherals -#define MC_PUER (AT91_CAST(AT91_REG *) 0x00000054) // (MC_PUER) MC Protection Unit Enable Register - -#endif -// -------- MC_RCR : (MC Offset: 0x0) MC Remap Control Register -------- -#define AT91C_MC_RCB (0x1 << 0) // (MC) Remap Command Bit -// -------- MC_ASR : (MC Offset: 0x4) MC Abort Status Register -------- -#define AT91C_MC_UNDADD (0x1 << 0) // (MC) Undefined Addess Abort Status -#define AT91C_MC_MISADD (0x1 << 1) // (MC) Misaligned Addess Abort Status -#define AT91C_MC_MPU (0x1 << 2) // (MC) Memory protection Unit Abort Status -#define AT91C_MC_ABTSZ (0x3 << 8) // (MC) Abort Size Status -#define AT91C_MC_ABTSZ_BYTE (0x0 << 8) // (MC) Byte -#define AT91C_MC_ABTSZ_HWORD (0x1 << 8) // (MC) Half-word -#define AT91C_MC_ABTSZ_WORD (0x2 << 8) // (MC) Word -#define AT91C_MC_ABTTYP (0x3 << 10) // (MC) Abort Type Status -#define AT91C_MC_ABTTYP_DATAR (0x0 << 10) // (MC) Data Read -#define AT91C_MC_ABTTYP_DATAW (0x1 << 10) // (MC) Data Write -#define AT91C_MC_ABTTYP_FETCH (0x2 << 10) // (MC) Code Fetch -#define AT91C_MC_MST0 (0x1 << 16) // (MC) Master 0 Abort Source -#define AT91C_MC_MST1 (0x1 << 17) // (MC) Master 1 Abort Source -#define AT91C_MC_SVMST0 (0x1 << 24) // (MC) Saved Master 0 Abort Source -#define AT91C_MC_SVMST1 (0x1 << 25) // (MC) Saved Master 1 Abort Source -// -------- MC_PUIA : (MC Offset: 0x10) MC Protection Unit Area -------- -#define AT91C_MC_PROT (0x3 << 0) // (MC) Protection -#define AT91C_MC_PROT_PNAUNA (0x0) // (MC) Privilege: No Access, User: No Access -#define AT91C_MC_PROT_PRWUNA (0x1) // (MC) Privilege: Read/Write, User: No Access -#define AT91C_MC_PROT_PRWURO (0x2) // (MC) Privilege: Read/Write, User: Read Only -#define AT91C_MC_PROT_PRWURW (0x3) // (MC) Privilege: Read/Write, User: Read/Write -#define AT91C_MC_SIZE (0xF << 4) // (MC) Internal Area Size -#define AT91C_MC_SIZE_1KB (0x0 << 4) // (MC) Area size 1KByte -#define AT91C_MC_SIZE_2KB (0x1 << 4) // (MC) Area size 2KByte -#define AT91C_MC_SIZE_4KB (0x2 << 4) // (MC) Area size 4KByte -#define AT91C_MC_SIZE_8KB (0x3 << 4) // (MC) Area size 8KByte -#define AT91C_MC_SIZE_16KB (0x4 << 4) // (MC) Area size 16KByte -#define AT91C_MC_SIZE_32KB (0x5 << 4) // (MC) Area size 32KByte -#define AT91C_MC_SIZE_64KB (0x6 << 4) // (MC) Area size 64KByte -#define AT91C_MC_SIZE_128KB (0x7 << 4) // (MC) Area size 128KByte -#define AT91C_MC_SIZE_256KB (0x8 << 4) // (MC) Area size 256KByte -#define AT91C_MC_SIZE_512KB (0x9 << 4) // (MC) Area size 512KByte -#define AT91C_MC_SIZE_1MB (0xA << 4) // (MC) Area size 1MByte -#define AT91C_MC_SIZE_2MB (0xB << 4) // (MC) Area size 2MByte -#define AT91C_MC_SIZE_4MB (0xC << 4) // (MC) Area size 4MByte -#define AT91C_MC_SIZE_8MB (0xD << 4) // (MC) Area size 8MByte -#define AT91C_MC_SIZE_16MB (0xE << 4) // (MC) Area size 16MByte -#define AT91C_MC_SIZE_64MB (0xF << 4) // (MC) Area size 64MByte -#define AT91C_MC_BA (0x3FFFF << 10) // (MC) Internal Area Base Address -// -------- MC_PUP : (MC Offset: 0x50) MC Protection Unit Peripheral -------- -// -------- MC_PUER : (MC Offset: 0x54) MC Protection Unit Area -------- -#define AT91C_MC_PUEB (0x1 << 0) // (MC) Protection Unit enable Bit - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Serial Parallel Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_SPI { - AT91_REG SPI_CR; // Control Register - AT91_REG SPI_MR; // Mode Register - AT91_REG SPI_RDR; // Receive Data Register - AT91_REG SPI_TDR; // Transmit Data Register - AT91_REG SPI_SR; // Status Register - AT91_REG SPI_IER; // Interrupt Enable Register - AT91_REG SPI_IDR; // Interrupt Disable Register - AT91_REG SPI_IMR; // Interrupt Mask Register - AT91_REG Reserved0[4]; // - AT91_REG SPI_CSR[4]; // Chip Select Register - AT91_REG Reserved1[48]; // - AT91_REG SPI_RPR; // Receive Pointer Register - AT91_REG SPI_RCR; // Receive Counter Register - AT91_REG SPI_TPR; // Transmit Pointer Register - AT91_REG SPI_TCR; // Transmit Counter Register - AT91_REG SPI_RNPR; // Receive Next Pointer Register - AT91_REG SPI_RNCR; // Receive Next Counter Register - AT91_REG SPI_TNPR; // Transmit Next Pointer Register - AT91_REG SPI_TNCR; // Transmit Next Counter Register - AT91_REG SPI_PTCR; // PDC Transfer Control Register - AT91_REG SPI_PTSR; // PDC Transfer Status Register -} AT91S_SPI, *AT91PS_SPI; -#else -#define SPI_CR (AT91_CAST(AT91_REG *) 0x00000000) // (SPI_CR) Control Register -#define SPI_MR (AT91_CAST(AT91_REG *) 0x00000004) // (SPI_MR) Mode Register -#define SPI_RDR (AT91_CAST(AT91_REG *) 0x00000008) // (SPI_RDR) Receive Data Register -#define SPI_TDR (AT91_CAST(AT91_REG *) 0x0000000C) // (SPI_TDR) Transmit Data Register -#define SPI_SR (AT91_CAST(AT91_REG *) 0x00000010) // (SPI_SR) Status Register -#define SPI_IER (AT91_CAST(AT91_REG *) 0x00000014) // (SPI_IER) Interrupt Enable Register -#define SPI_IDR (AT91_CAST(AT91_REG *) 0x00000018) // (SPI_IDR) Interrupt Disable Register -#define SPI_IMR (AT91_CAST(AT91_REG *) 0x0000001C) // (SPI_IMR) Interrupt Mask Register -#define SPI_CSR (AT91_CAST(AT91_REG *) 0x00000030) // (SPI_CSR) Chip Select Register - -#endif -// -------- SPI_CR : (SPI Offset: 0x0) SPI Control Register -------- -#define AT91C_SPI_SPIEN (0x1 << 0) // (SPI) SPI Enable -#define AT91C_SPI_SPIDIS (0x1 << 1) // (SPI) SPI Disable -#define AT91C_SPI_SWRST (0x1 << 7) // (SPI) SPI Software reset -#define AT91C_SPI_LASTXFER (0x1 << 24) // (SPI) SPI Last Transfer -// -------- SPI_MR : (SPI Offset: 0x4) SPI Mode Register -------- -#define AT91C_SPI_MSTR (0x1 << 0) // (SPI) Master/Slave Mode -#define AT91C_SPI_PS (0x1 << 1) // (SPI) Peripheral Select -#define AT91C_SPI_PS_FIXED (0x0 << 1) // (SPI) Fixed Peripheral Select -#define AT91C_SPI_PS_VARIABLE (0x1 << 1) // (SPI) Variable Peripheral Select -#define AT91C_SPI_PCSDEC (0x1 << 2) // (SPI) Chip Select Decode -#define AT91C_SPI_FDIV (0x1 << 3) // (SPI) Clock Selection -#define AT91C_SPI_MODFDIS (0x1 << 4) // (SPI) Mode Fault Detection -#define AT91C_SPI_LLB (0x1 << 7) // (SPI) Clock Selection -#define AT91C_SPI_PCS (0xF << 16) // (SPI) Peripheral Chip Select -#define AT91C_SPI_DLYBCS (0xFF << 24) // (SPI) Delay Between Chip Selects -// -------- SPI_RDR : (SPI Offset: 0x8) Receive Data Register -------- -#define AT91C_SPI_RD (0xFFFF << 0) // (SPI) Receive Data -#define AT91C_SPI_RPCS (0xF << 16) // (SPI) Peripheral Chip Select Status -// -------- SPI_TDR : (SPI Offset: 0xc) Transmit Data Register -------- -#define AT91C_SPI_TD (0xFFFF << 0) // (SPI) Transmit Data -#define AT91C_SPI_TPCS (0xF << 16) // (SPI) Peripheral Chip Select Status -// -------- SPI_SR : (SPI Offset: 0x10) Status Register -------- -#define AT91C_SPI_RDRF (0x1 << 0) // (SPI) Receive Data Register Full -#define AT91C_SPI_TDRE (0x1 << 1) // (SPI) Transmit Data Register Empty -#define AT91C_SPI_MODF (0x1 << 2) // (SPI) Mode Fault Error -#define AT91C_SPI_OVRES (0x1 << 3) // (SPI) Overrun Error Status -#define AT91C_SPI_ENDRX (0x1 << 4) // (SPI) End of Receiver Transfer -#define AT91C_SPI_ENDTX (0x1 << 5) // (SPI) End of Receiver Transfer -#define AT91C_SPI_RXBUFF (0x1 << 6) // (SPI) RXBUFF Interrupt -#define AT91C_SPI_TXBUFE (0x1 << 7) // (SPI) TXBUFE Interrupt -#define AT91C_SPI_NSSR (0x1 << 8) // (SPI) NSSR Interrupt -#define AT91C_SPI_TXEMPTY (0x1 << 9) // (SPI) TXEMPTY Interrupt -#define AT91C_SPI_SPIENS (0x1 << 16) // (SPI) Enable Status -// -------- SPI_IER : (SPI Offset: 0x14) Interrupt Enable Register -------- -// -------- SPI_IDR : (SPI Offset: 0x18) Interrupt Disable Register -------- -// -------- SPI_IMR : (SPI Offset: 0x1c) Interrupt Mask Register -------- -// -------- SPI_CSR : (SPI Offset: 0x30) Chip Select Register -------- -#define AT91C_SPI_CPOL (0x1 << 0) // (SPI) Clock Polarity -#define AT91C_SPI_NCPHA (0x1 << 1) // (SPI) Clock Phase -#define AT91C_SPI_CSAAT (0x1 << 3) // (SPI) Chip Select Active After Transfer -#define AT91C_SPI_BITS (0xF << 4) // (SPI) Bits Per Transfer -#define AT91C_SPI_BITS_8 (0x0 << 4) // (SPI) 8 Bits Per transfer -#define AT91C_SPI_BITS_9 (0x1 << 4) // (SPI) 9 Bits Per transfer -#define AT91C_SPI_BITS_10 (0x2 << 4) // (SPI) 10 Bits Per transfer -#define AT91C_SPI_BITS_11 (0x3 << 4) // (SPI) 11 Bits Per transfer -#define AT91C_SPI_BITS_12 (0x4 << 4) // (SPI) 12 Bits Per transfer -#define AT91C_SPI_BITS_13 (0x5 << 4) // (SPI) 13 Bits Per transfer -#define AT91C_SPI_BITS_14 (0x6 << 4) // (SPI) 14 Bits Per transfer -#define AT91C_SPI_BITS_15 (0x7 << 4) // (SPI) 15 Bits Per transfer -#define AT91C_SPI_BITS_16 (0x8 << 4) // (SPI) 16 Bits Per transfer -#define AT91C_SPI_SCBR (0xFF << 8) // (SPI) Serial Clock Baud Rate -#define AT91C_SPI_DLYBS (0xFF << 16) // (SPI) Delay Before SPCK -#define AT91C_SPI_DLYBCT (0xFF << 24) // (SPI) Delay Between Consecutive Transfers - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Analog to Digital Convertor -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_ADC { - AT91_REG ADC_CR; // ADC Control Register - AT91_REG ADC_MR; // ADC Mode Register - AT91_REG Reserved0[2]; // - AT91_REG ADC_CHER; // ADC Channel Enable Register - AT91_REG ADC_CHDR; // ADC Channel Disable Register - AT91_REG ADC_CHSR; // ADC Channel Status Register - AT91_REG ADC_SR; // ADC Status Register - AT91_REG ADC_LCDR; // ADC Last Converted Data Register - AT91_REG ADC_IER; // ADC Interrupt Enable Register - AT91_REG ADC_IDR; // ADC Interrupt Disable Register - AT91_REG ADC_IMR; // ADC Interrupt Mask Register - AT91_REG ADC_CDR[8]; // ADC Channel Data Register - AT91_REG Reserved1[44]; // - AT91_REG ADC_RPR; // Receive Pointer Register - AT91_REG ADC_RCR; // Receive Counter Register - AT91_REG ADC_TPR; // Transmit Pointer Register - AT91_REG ADC_TCR; // Transmit Counter Register - AT91_REG ADC_RNPR; // Receive Next Pointer Register - AT91_REG ADC_RNCR; // Receive Next Counter Register - AT91_REG ADC_TNPR; // Transmit Next Pointer Register - AT91_REG ADC_TNCR; // Transmit Next Counter Register - AT91_REG ADC_PTCR; // PDC Transfer Control Register - AT91_REG ADC_PTSR; // PDC Transfer Status Register -} AT91S_ADC, *AT91PS_ADC; -#else -#define ADC_CR (AT91_CAST(AT91_REG *) 0x00000000) // (ADC_CR) ADC Control Register -#define ADC_MR (AT91_CAST(AT91_REG *) 0x00000004) // (ADC_MR) ADC Mode Register -#define ADC_CHER (AT91_CAST(AT91_REG *) 0x00000010) // (ADC_CHER) ADC Channel Enable Register -#define ADC_CHDR (AT91_CAST(AT91_REG *) 0x00000014) // (ADC_CHDR) ADC Channel Disable Register -#define ADC_CHSR (AT91_CAST(AT91_REG *) 0x00000018) // (ADC_CHSR) ADC Channel Status Register -#define ADC_SR (AT91_CAST(AT91_REG *) 0x0000001C) // (ADC_SR) ADC Status Register -#define ADC_LCDR (AT91_CAST(AT91_REG *) 0x00000020) // (ADC_LCDR) ADC Last Converted Data Register -#define ADC_IER (AT91_CAST(AT91_REG *) 0x00000024) // (ADC_IER) ADC Interrupt Enable Register -#define ADC_IDR (AT91_CAST(AT91_REG *) 0x00000028) // (ADC_IDR) ADC Interrupt Disable Register -#define ADC_IMR (AT91_CAST(AT91_REG *) 0x0000002C) // (ADC_IMR) ADC Interrupt Mask Register -#define ADC_CDR0 (AT91_CAST(AT91_REG *) 0x00000030) // (ADC_CDR0) ADC Channel Data Register 0 -#define ADC_CDR1 (AT91_CAST(AT91_REG *) 0x00000034) // (ADC_CDR1) ADC Channel Data Register 1 -#define ADC_CDR2 (AT91_CAST(AT91_REG *) 0x00000038) // (ADC_CDR2) ADC Channel Data Register 2 -#define ADC_CDR3 (AT91_CAST(AT91_REG *) 0x0000003C) // (ADC_CDR3) ADC Channel Data Register 3 -#define ADC_CDR4 (AT91_CAST(AT91_REG *) 0x00000040) // (ADC_CDR4) ADC Channel Data Register 4 -#define ADC_CDR5 (AT91_CAST(AT91_REG *) 0x00000044) // (ADC_CDR5) ADC Channel Data Register 5 -#define ADC_CDR6 (AT91_CAST(AT91_REG *) 0x00000048) // (ADC_CDR6) ADC Channel Data Register 6 -#define ADC_CDR7 (AT91_CAST(AT91_REG *) 0x0000004C) // (ADC_CDR7) ADC Channel Data Register 7 - -#endif -// -------- ADC_CR : (ADC Offset: 0x0) ADC Control Register -------- -#define AT91C_ADC_SWRST (0x1 << 0) // (ADC) Software Reset -#define AT91C_ADC_START (0x1 << 1) // (ADC) Start Conversion -// -------- ADC_MR : (ADC Offset: 0x4) ADC Mode Register -------- -#define AT91C_ADC_TRGEN (0x1 << 0) // (ADC) Trigger Enable -#define AT91C_ADC_TRGEN_DIS (0x0) // (ADC) Hradware triggers are disabled. Starting a conversion is only possible by software -#define AT91C_ADC_TRGEN_EN (0x1) // (ADC) Hardware trigger selected by TRGSEL field is enabled. -#define AT91C_ADC_TRGSEL (0x7 << 1) // (ADC) Trigger Selection -#define AT91C_ADC_TRGSEL_TIOA0 (0x0 << 1) // (ADC) Selected TRGSEL = TIAO0 -#define AT91C_ADC_TRGSEL_TIOA1 (0x1 << 1) // (ADC) Selected TRGSEL = TIAO1 -#define AT91C_ADC_TRGSEL_TIOA2 (0x2 << 1) // (ADC) Selected TRGSEL = TIAO2 -#define AT91C_ADC_TRGSEL_TIOA3 (0x3 << 1) // (ADC) Selected TRGSEL = TIAO3 -#define AT91C_ADC_TRGSEL_TIOA4 (0x4 << 1) // (ADC) Selected TRGSEL = TIAO4 -#define AT91C_ADC_TRGSEL_TIOA5 (0x5 << 1) // (ADC) Selected TRGSEL = TIAO5 -#define AT91C_ADC_TRGSEL_EXT (0x6 << 1) // (ADC) Selected TRGSEL = External Trigger -#define AT91C_ADC_LOWRES (0x1 << 4) // (ADC) Resolution. -#define AT91C_ADC_LOWRES_10_BIT (0x0 << 4) // (ADC) 10-bit resolution -#define AT91C_ADC_LOWRES_8_BIT (0x1 << 4) // (ADC) 8-bit resolution -#define AT91C_ADC_SLEEP (0x1 << 5) // (ADC) Sleep Mode -#define AT91C_ADC_SLEEP_NORMAL_MODE (0x0 << 5) // (ADC) Normal Mode -#define AT91C_ADC_SLEEP_MODE (0x1 << 5) // (ADC) Sleep Mode -#define AT91C_ADC_PRESCAL (0x3F << 8) // (ADC) Prescaler rate selection -#define AT91C_ADC_STARTUP (0x1F << 16) // (ADC) Startup Time -#define AT91C_ADC_SHTIM (0xF << 24) // (ADC) Sample & Hold Time -// -------- ADC_CHER : (ADC Offset: 0x10) ADC Channel Enable Register -------- -#define AT91C_ADC_CH0 (0x1 << 0) // (ADC) Channel 0 -#define AT91C_ADC_CH1 (0x1 << 1) // (ADC) Channel 1 -#define AT91C_ADC_CH2 (0x1 << 2) // (ADC) Channel 2 -#define AT91C_ADC_CH3 (0x1 << 3) // (ADC) Channel 3 -#define AT91C_ADC_CH4 (0x1 << 4) // (ADC) Channel 4 -#define AT91C_ADC_CH5 (0x1 << 5) // (ADC) Channel 5 -#define AT91C_ADC_CH6 (0x1 << 6) // (ADC) Channel 6 -#define AT91C_ADC_CH7 (0x1 << 7) // (ADC) Channel 7 -// -------- ADC_CHDR : (ADC Offset: 0x14) ADC Channel Disable Register -------- -// -------- ADC_CHSR : (ADC Offset: 0x18) ADC Channel Status Register -------- -// -------- ADC_SR : (ADC Offset: 0x1c) ADC Status Register -------- -#define AT91C_ADC_EOC0 (0x1 << 0) // (ADC) End of Conversion -#define AT91C_ADC_EOC1 (0x1 << 1) // (ADC) End of Conversion -#define AT91C_ADC_EOC2 (0x1 << 2) // (ADC) End of Conversion -#define AT91C_ADC_EOC3 (0x1 << 3) // (ADC) End of Conversion -#define AT91C_ADC_EOC4 (0x1 << 4) // (ADC) End of Conversion -#define AT91C_ADC_EOC5 (0x1 << 5) // (ADC) End of Conversion -#define AT91C_ADC_EOC6 (0x1 << 6) // (ADC) End of Conversion -#define AT91C_ADC_EOC7 (0x1 << 7) // (ADC) End of Conversion -#define AT91C_ADC_OVRE0 (0x1 << 8) // (ADC) Overrun Error -#define AT91C_ADC_OVRE1 (0x1 << 9) // (ADC) Overrun Error -#define AT91C_ADC_OVRE2 (0x1 << 10) // (ADC) Overrun Error -#define AT91C_ADC_OVRE3 (0x1 << 11) // (ADC) Overrun Error -#define AT91C_ADC_OVRE4 (0x1 << 12) // (ADC) Overrun Error -#define AT91C_ADC_OVRE5 (0x1 << 13) // (ADC) Overrun Error -#define AT91C_ADC_OVRE6 (0x1 << 14) // (ADC) Overrun Error -#define AT91C_ADC_OVRE7 (0x1 << 15) // (ADC) Overrun Error -#define AT91C_ADC_DRDY (0x1 << 16) // (ADC) Data Ready -#define AT91C_ADC_GOVRE (0x1 << 17) // (ADC) General Overrun -#define AT91C_ADC_ENDRX (0x1 << 18) // (ADC) End of Receiver Transfer -#define AT91C_ADC_RXBUFF (0x1 << 19) // (ADC) RXBUFF Interrupt -// -------- ADC_LCDR : (ADC Offset: 0x20) ADC Last Converted Data Register -------- -#define AT91C_ADC_LDATA (0x3FF << 0) // (ADC) Last Data Converted -// -------- ADC_IER : (ADC Offset: 0x24) ADC Interrupt Enable Register -------- -// -------- ADC_IDR : (ADC Offset: 0x28) ADC Interrupt Disable Register -------- -// -------- ADC_IMR : (ADC Offset: 0x2c) ADC Interrupt Mask Register -------- -// -------- ADC_CDR0 : (ADC Offset: 0x30) ADC Channel Data Register 0 -------- -#define AT91C_ADC_DATA (0x3FF << 0) // (ADC) Converted Data -// -------- ADC_CDR1 : (ADC Offset: 0x34) ADC Channel Data Register 1 -------- -// -------- ADC_CDR2 : (ADC Offset: 0x38) ADC Channel Data Register 2 -------- -// -------- ADC_CDR3 : (ADC Offset: 0x3c) ADC Channel Data Register 3 -------- -// -------- ADC_CDR4 : (ADC Offset: 0x40) ADC Channel Data Register 4 -------- -// -------- ADC_CDR5 : (ADC Offset: 0x44) ADC Channel Data Register 5 -------- -// -------- ADC_CDR6 : (ADC Offset: 0x48) ADC Channel Data Register 6 -------- -// -------- ADC_CDR7 : (ADC Offset: 0x4c) ADC Channel Data Register 7 -------- - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Synchronous Serial Controller Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_SSC { - AT91_REG SSC_CR; // Control Register - AT91_REG SSC_CMR; // Clock Mode Register - AT91_REG Reserved0[2]; // - AT91_REG SSC_RCMR; // Receive Clock ModeRegister - AT91_REG SSC_RFMR; // Receive Frame Mode Register - AT91_REG SSC_TCMR; // Transmit Clock Mode Register - AT91_REG SSC_TFMR; // Transmit Frame Mode Register - AT91_REG SSC_RHR; // Receive Holding Register - AT91_REG SSC_THR; // Transmit Holding Register - AT91_REG Reserved1[2]; // - AT91_REG SSC_RSHR; // Receive Sync Holding Register - AT91_REG SSC_TSHR; // Transmit Sync Holding Register - AT91_REG Reserved2[2]; // - AT91_REG SSC_SR; // Status Register - AT91_REG SSC_IER; // Interrupt Enable Register - AT91_REG SSC_IDR; // Interrupt Disable Register - AT91_REG SSC_IMR; // Interrupt Mask Register - AT91_REG Reserved3[44]; // - AT91_REG SSC_RPR; // Receive Pointer Register - AT91_REG SSC_RCR; // Receive Counter Register - AT91_REG SSC_TPR; // Transmit Pointer Register - AT91_REG SSC_TCR; // Transmit Counter Register - AT91_REG SSC_RNPR; // Receive Next Pointer Register - AT91_REG SSC_RNCR; // Receive Next Counter Register - AT91_REG SSC_TNPR; // Transmit Next Pointer Register - AT91_REG SSC_TNCR; // Transmit Next Counter Register - AT91_REG SSC_PTCR; // PDC Transfer Control Register - AT91_REG SSC_PTSR; // PDC Transfer Status Register -} AT91S_SSC, *AT91PS_SSC; -#else -#define SSC_CR (AT91_CAST(AT91_REG *) 0x00000000) // (SSC_CR) Control Register -#define SSC_CMR (AT91_CAST(AT91_REG *) 0x00000004) // (SSC_CMR) Clock Mode Register -#define SSC_RCMR (AT91_CAST(AT91_REG *) 0x00000010) // (SSC_RCMR) Receive Clock ModeRegister -#define SSC_RFMR (AT91_CAST(AT91_REG *) 0x00000014) // (SSC_RFMR) Receive Frame Mode Register -#define SSC_TCMR (AT91_CAST(AT91_REG *) 0x00000018) // (SSC_TCMR) Transmit Clock Mode Register -#define SSC_TFMR (AT91_CAST(AT91_REG *) 0x0000001C) // (SSC_TFMR) Transmit Frame Mode Register -#define SSC_RHR (AT91_CAST(AT91_REG *) 0x00000020) // (SSC_RHR) Receive Holding Register -#define SSC_THR (AT91_CAST(AT91_REG *) 0x00000024) // (SSC_THR) Transmit Holding Register -#define SSC_RSHR (AT91_CAST(AT91_REG *) 0x00000030) // (SSC_RSHR) Receive Sync Holding Register -#define SSC_TSHR (AT91_CAST(AT91_REG *) 0x00000034) // (SSC_TSHR) Transmit Sync Holding Register -#define SSC_SR (AT91_CAST(AT91_REG *) 0x00000040) // (SSC_SR) Status Register -#define SSC_IER (AT91_CAST(AT91_REG *) 0x00000044) // (SSC_IER) Interrupt Enable Register -#define SSC_IDR (AT91_CAST(AT91_REG *) 0x00000048) // (SSC_IDR) Interrupt Disable Register -#define SSC_IMR (AT91_CAST(AT91_REG *) 0x0000004C) // (SSC_IMR) Interrupt Mask Register - -#endif -// -------- SSC_CR : (SSC Offset: 0x0) SSC Control Register -------- -#define AT91C_SSC_RXEN (0x1 << 0) // (SSC) Receive Enable -#define AT91C_SSC_RXDIS (0x1 << 1) // (SSC) Receive Disable -#define AT91C_SSC_TXEN (0x1 << 8) // (SSC) Transmit Enable -#define AT91C_SSC_TXDIS (0x1 << 9) // (SSC) Transmit Disable -#define AT91C_SSC_SWRST (0x1 << 15) // (SSC) Software Reset -// -------- SSC_RCMR : (SSC Offset: 0x10) SSC Receive Clock Mode Register -------- -#define AT91C_SSC_CKS (0x3 << 0) // (SSC) Receive/Transmit Clock Selection -#define AT91C_SSC_CKS_DIV (0x0) // (SSC) Divided Clock -#define AT91C_SSC_CKS_TK (0x1) // (SSC) TK Clock signal -#define AT91C_SSC_CKS_RK (0x2) // (SSC) RK pin -#define AT91C_SSC_CKO (0x7 << 2) // (SSC) Receive/Transmit Clock Output Mode Selection -#define AT91C_SSC_CKO_NONE (0x0 << 2) // (SSC) Receive/Transmit Clock Output Mode: None RK pin: Input-only -#define AT91C_SSC_CKO_CONTINOUS (0x1 << 2) // (SSC) Continuous Receive/Transmit Clock RK pin: Output -#define AT91C_SSC_CKO_DATA_TX (0x2 << 2) // (SSC) Receive/Transmit Clock only during data transfers RK pin: Output -#define AT91C_SSC_CKI (0x1 << 5) // (SSC) Receive/Transmit Clock Inversion -#define AT91C_SSC_START (0xF << 8) // (SSC) Receive/Transmit Start Selection -#define AT91C_SSC_START_CONTINOUS (0x0 << 8) // (SSC) Continuous, as soon as the receiver is enabled, and immediately after the end of transfer of the previous data. -#define AT91C_SSC_START_TX (0x1 << 8) // (SSC) Transmit/Receive start -#define AT91C_SSC_START_LOW_RF (0x2 << 8) // (SSC) Detection of a low level on RF input -#define AT91C_SSC_START_HIGH_RF (0x3 << 8) // (SSC) Detection of a high level on RF input -#define AT91C_SSC_START_FALL_RF (0x4 << 8) // (SSC) Detection of a falling edge on RF input -#define AT91C_SSC_START_RISE_RF (0x5 << 8) // (SSC) Detection of a rising edge on RF input -#define AT91C_SSC_START_LEVEL_RF (0x6 << 8) // (SSC) Detection of any level change on RF input -#define AT91C_SSC_START_EDGE_RF (0x7 << 8) // (SSC) Detection of any edge on RF input -#define AT91C_SSC_START_0 (0x8 << 8) // (SSC) Compare 0 -#define AT91C_SSC_STTDLY (0xFF << 16) // (SSC) Receive/Transmit Start Delay -#define AT91C_SSC_PERIOD (0xFF << 24) // (SSC) Receive/Transmit Period Divider Selection -// -------- SSC_RFMR : (SSC Offset: 0x14) SSC Receive Frame Mode Register -------- -#define AT91C_SSC_DATLEN (0x1F << 0) // (SSC) Data Length -#define AT91C_SSC_LOOP (0x1 << 5) // (SSC) Loop Mode -#define AT91C_SSC_MSBF (0x1 << 7) // (SSC) Most Significant Bit First -#define AT91C_SSC_DATNB (0xF << 8) // (SSC) Data Number per Frame -#define AT91C_SSC_FSLEN (0xF << 16) // (SSC) Receive/Transmit Frame Sync length -#define AT91C_SSC_FSOS (0x7 << 20) // (SSC) Receive/Transmit Frame Sync Output Selection -#define AT91C_SSC_FSOS_NONE (0x0 << 20) // (SSC) Selected Receive/Transmit Frame Sync Signal: None RK pin Input-only -#define AT91C_SSC_FSOS_NEGATIVE (0x1 << 20) // (SSC) Selected Receive/Transmit Frame Sync Signal: Negative Pulse -#define AT91C_SSC_FSOS_POSITIVE (0x2 << 20) // (SSC) Selected Receive/Transmit Frame Sync Signal: Positive Pulse -#define AT91C_SSC_FSOS_LOW (0x3 << 20) // (SSC) Selected Receive/Transmit Frame Sync Signal: Driver Low during data transfer -#define AT91C_SSC_FSOS_HIGH (0x4 << 20) // (SSC) Selected Receive/Transmit Frame Sync Signal: Driver High during data transfer -#define AT91C_SSC_FSOS_TOGGLE (0x5 << 20) // (SSC) Selected Receive/Transmit Frame Sync Signal: Toggling at each start of data transfer -#define AT91C_SSC_FSEDGE (0x1 << 24) // (SSC) Frame Sync Edge Detection -// -------- SSC_TCMR : (SSC Offset: 0x18) SSC Transmit Clock Mode Register -------- -// -------- SSC_TFMR : (SSC Offset: 0x1c) SSC Transmit Frame Mode Register -------- -#define AT91C_SSC_DATDEF (0x1 << 5) // (SSC) Data Default Value -#define AT91C_SSC_FSDEN (0x1 << 23) // (SSC) Frame Sync Data Enable -// -------- SSC_SR : (SSC Offset: 0x40) SSC Status Register -------- -#define AT91C_SSC_TXRDY (0x1 << 0) // (SSC) Transmit Ready -#define AT91C_SSC_TXEMPTY (0x1 << 1) // (SSC) Transmit Empty -#define AT91C_SSC_ENDTX (0x1 << 2) // (SSC) End Of Transmission -#define AT91C_SSC_TXBUFE (0x1 << 3) // (SSC) Transmit Buffer Empty -#define AT91C_SSC_RXRDY (0x1 << 4) // (SSC) Receive Ready -#define AT91C_SSC_OVRUN (0x1 << 5) // (SSC) Receive Overrun -#define AT91C_SSC_ENDRX (0x1 << 6) // (SSC) End of Reception -#define AT91C_SSC_RXBUFF (0x1 << 7) // (SSC) Receive Buffer Full -#define AT91C_SSC_TXSYN (0x1 << 10) // (SSC) Transmit Sync -#define AT91C_SSC_RXSYN (0x1 << 11) // (SSC) Receive Sync -#define AT91C_SSC_TXENA (0x1 << 16) // (SSC) Transmit Enable -#define AT91C_SSC_RXENA (0x1 << 17) // (SSC) Receive Enable -// -------- SSC_IER : (SSC Offset: 0x44) SSC Interrupt Enable Register -------- -// -------- SSC_IDR : (SSC Offset: 0x48) SSC Interrupt Disable Register -------- -// -------- SSC_IMR : (SSC Offset: 0x4c) SSC Interrupt Mask Register -------- - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Usart -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_USART { - AT91_REG US_CR; // Control Register - AT91_REG US_MR; // Mode Register - AT91_REG US_IER; // Interrupt Enable Register - AT91_REG US_IDR; // Interrupt Disable Register - AT91_REG US_IMR; // Interrupt Mask Register - AT91_REG US_CSR; // Channel Status Register - AT91_REG US_RHR; // Receiver Holding Register - AT91_REG US_THR; // Transmitter Holding Register - AT91_REG US_BRGR; // Baud Rate Generator Register - AT91_REG US_RTOR; // Receiver Time-out Register - AT91_REG US_TTGR; // Transmitter Time-guard Register - AT91_REG Reserved0[5]; // - AT91_REG US_FIDI; // FI_DI_Ratio Register - AT91_REG US_NER; // Nb Errors Register - AT91_REG Reserved1[1]; // - AT91_REG US_IF; // IRDA_FILTER Register - AT91_REG Reserved2[44]; // - AT91_REG US_RPR; // Receive Pointer Register - AT91_REG US_RCR; // Receive Counter Register - AT91_REG US_TPR; // Transmit Pointer Register - AT91_REG US_TCR; // Transmit Counter Register - AT91_REG US_RNPR; // Receive Next Pointer Register - AT91_REG US_RNCR; // Receive Next Counter Register - AT91_REG US_TNPR; // Transmit Next Pointer Register - AT91_REG US_TNCR; // Transmit Next Counter Register - AT91_REG US_PTCR; // PDC Transfer Control Register - AT91_REG US_PTSR; // PDC Transfer Status Register -} AT91S_USART, *AT91PS_USART; -#else -#define US_CR (AT91_CAST(AT91_REG *) 0x00000000) // (US_CR) Control Register -#define US_MR (AT91_CAST(AT91_REG *) 0x00000004) // (US_MR) Mode Register -#define US_IER (AT91_CAST(AT91_REG *) 0x00000008) // (US_IER) Interrupt Enable Register -#define US_IDR (AT91_CAST(AT91_REG *) 0x0000000C) // (US_IDR) Interrupt Disable Register -#define US_IMR (AT91_CAST(AT91_REG *) 0x00000010) // (US_IMR) Interrupt Mask Register -#define US_CSR (AT91_CAST(AT91_REG *) 0x00000014) // (US_CSR) Channel Status Register -#define US_RHR (AT91_CAST(AT91_REG *) 0x00000018) // (US_RHR) Receiver Holding Register -#define US_THR (AT91_CAST(AT91_REG *) 0x0000001C) // (US_THR) Transmitter Holding Register -#define US_BRGR (AT91_CAST(AT91_REG *) 0x00000020) // (US_BRGR) Baud Rate Generator Register -#define US_RTOR (AT91_CAST(AT91_REG *) 0x00000024) // (US_RTOR) Receiver Time-out Register -#define US_TTGR (AT91_CAST(AT91_REG *) 0x00000028) // (US_TTGR) Transmitter Time-guard Register -#define US_FIDI (AT91_CAST(AT91_REG *) 0x00000040) // (US_FIDI) FI_DI_Ratio Register -#define US_NER (AT91_CAST(AT91_REG *) 0x00000044) // (US_NER) Nb Errors Register -#define US_IF (AT91_CAST(AT91_REG *) 0x0000004C) // (US_IF) IRDA_FILTER Register - -#endif -// -------- US_CR : (USART Offset: 0x0) Debug Unit Control Register -------- -#define AT91C_US_STTBRK (0x1 << 9) // (USART) Start Break -#define AT91C_US_STPBRK (0x1 << 10) // (USART) Stop Break -#define AT91C_US_STTTO (0x1 << 11) // (USART) Start Time-out -#define AT91C_US_SENDA (0x1 << 12) // (USART) Send Address -#define AT91C_US_RSTIT (0x1 << 13) // (USART) Reset Iterations -#define AT91C_US_RSTNACK (0x1 << 14) // (USART) Reset Non Acknowledge -#define AT91C_US_RETTO (0x1 << 15) // (USART) Rearm Time-out -#define AT91C_US_DTREN (0x1 << 16) // (USART) Data Terminal ready Enable -#define AT91C_US_DTRDIS (0x1 << 17) // (USART) Data Terminal ready Disable -#define AT91C_US_RTSEN (0x1 << 18) // (USART) Request to Send enable -#define AT91C_US_RTSDIS (0x1 << 19) // (USART) Request to Send Disable -// -------- US_MR : (USART Offset: 0x4) Debug Unit Mode Register -------- -#define AT91C_US_USMODE (0xF << 0) // (USART) Usart mode -#define AT91C_US_USMODE_NORMAL (0x0) // (USART) Normal -#define AT91C_US_USMODE_RS485 (0x1) // (USART) RS485 -#define AT91C_US_USMODE_HWHSH (0x2) // (USART) Hardware Handshaking -#define AT91C_US_USMODE_MODEM (0x3) // (USART) Modem -#define AT91C_US_USMODE_ISO7816_0 (0x4) // (USART) ISO7816 protocol: T = 0 -#define AT91C_US_USMODE_ISO7816_1 (0x6) // (USART) ISO7816 protocol: T = 1 -#define AT91C_US_USMODE_IRDA (0x8) // (USART) IrDA -#define AT91C_US_USMODE_SWHSH (0xC) // (USART) Software Handshaking -#define AT91C_US_CLKS (0x3 << 4) // (USART) Clock Selection (Baud Rate generator Input Clock -#define AT91C_US_CLKS_CLOCK (0x0 << 4) // (USART) Clock -#define AT91C_US_CLKS_FDIV1 (0x1 << 4) // (USART) fdiv1 -#define AT91C_US_CLKS_SLOW (0x2 << 4) // (USART) slow_clock (ARM) -#define AT91C_US_CLKS_EXT (0x3 << 4) // (USART) External (SCK) -#define AT91C_US_CHRL (0x3 << 6) // (USART) Clock Selection (Baud Rate generator Input Clock -#define AT91C_US_CHRL_5_BITS (0x0 << 6) // (USART) Character Length: 5 bits -#define AT91C_US_CHRL_6_BITS (0x1 << 6) // (USART) Character Length: 6 bits -#define AT91C_US_CHRL_7_BITS (0x2 << 6) // (USART) Character Length: 7 bits -#define AT91C_US_CHRL_8_BITS (0x3 << 6) // (USART) Character Length: 8 bits -#define AT91C_US_SYNC (0x1 << 8) // (USART) Synchronous Mode Select -#define AT91C_US_NBSTOP (0x3 << 12) // (USART) Number of Stop bits -#define AT91C_US_NBSTOP_1_BIT (0x0 << 12) // (USART) 1 stop bit -#define AT91C_US_NBSTOP_15_BIT (0x1 << 12) // (USART) Asynchronous (SYNC=0) 2 stop bits Synchronous (SYNC=1) 2 stop bits -#define AT91C_US_NBSTOP_2_BIT (0x2 << 12) // (USART) 2 stop bits -#define AT91C_US_MSBF (0x1 << 16) // (USART) Bit Order -#define AT91C_US_MODE9 (0x1 << 17) // (USART) 9-bit Character length -#define AT91C_US_CKLO (0x1 << 18) // (USART) Clock Output Select -#define AT91C_US_OVER (0x1 << 19) // (USART) Over Sampling Mode -#define AT91C_US_INACK (0x1 << 20) // (USART) Inhibit Non Acknowledge -#define AT91C_US_DSNACK (0x1 << 21) // (USART) Disable Successive NACK -#define AT91C_US_MAX_ITER (0x1 << 24) // (USART) Number of Repetitions -#define AT91C_US_FILTER (0x1 << 28) // (USART) Receive Line Filter -// -------- US_IER : (USART Offset: 0x8) Debug Unit Interrupt Enable Register -------- -#define AT91C_US_RXBRK (0x1 << 2) // (USART) Break Received/End of Break -#define AT91C_US_TIMEOUT (0x1 << 8) // (USART) Receiver Time-out -#define AT91C_US_ITERATION (0x1 << 10) // (USART) Max number of Repetitions Reached -#define AT91C_US_NACK (0x1 << 13) // (USART) Non Acknowledge -#define AT91C_US_RIIC (0x1 << 16) // (USART) Ring INdicator Input Change Flag -#define AT91C_US_DSRIC (0x1 << 17) // (USART) Data Set Ready Input Change Flag -#define AT91C_US_DCDIC (0x1 << 18) // (USART) Data Carrier Flag -#define AT91C_US_CTSIC (0x1 << 19) // (USART) Clear To Send Input Change Flag -// -------- US_IDR : (USART Offset: 0xc) Debug Unit Interrupt Disable Register -------- -// -------- US_IMR : (USART Offset: 0x10) Debug Unit Interrupt Mask Register -------- -// -------- US_CSR : (USART Offset: 0x14) Debug Unit Channel Status Register -------- -#define AT91C_US_RI (0x1 << 20) // (USART) Image of RI Input -#define AT91C_US_DSR (0x1 << 21) // (USART) Image of DSR Input -#define AT91C_US_DCD (0x1 << 22) // (USART) Image of DCD Input -#define AT91C_US_CTS (0x1 << 23) // (USART) Image of CTS Input - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Two-wire Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_TWI { - AT91_REG TWI_CR; // Control Register - AT91_REG TWI_MMR; // Master Mode Register - AT91_REG Reserved0[1]; // - AT91_REG TWI_IADR; // Internal Address Register - AT91_REG TWI_CWGR; // Clock Waveform Generator Register - AT91_REG Reserved1[3]; // - AT91_REG TWI_SR; // Status Register - AT91_REG TWI_IER; // Interrupt Enable Register - AT91_REG TWI_IDR; // Interrupt Disable Register - AT91_REG TWI_IMR; // Interrupt Mask Register - AT91_REG TWI_RHR; // Receive Holding Register - AT91_REG TWI_THR; // Transmit Holding Register - AT91_REG Reserved2[50]; // - AT91_REG TWI_RPR; // Receive Pointer Register - AT91_REG TWI_RCR; // Receive Counter Register - AT91_REG TWI_TPR; // Transmit Pointer Register - AT91_REG TWI_TCR; // Transmit Counter Register - AT91_REG TWI_RNPR; // Receive Next Pointer Register - AT91_REG TWI_RNCR; // Receive Next Counter Register - AT91_REG TWI_TNPR; // Transmit Next Pointer Register - AT91_REG TWI_TNCR; // Transmit Next Counter Register - AT91_REG TWI_PTCR; // PDC Transfer Control Register - AT91_REG TWI_PTSR; // PDC Transfer Status Register -} AT91S_TWI, *AT91PS_TWI; -#else -#define TWI_CR (AT91_CAST(AT91_REG *) 0x00000000) // (TWI_CR) Control Register -#define TWI_MMR (AT91_CAST(AT91_REG *) 0x00000004) // (TWI_MMR) Master Mode Register -#define TWI_IADR (AT91_CAST(AT91_REG *) 0x0000000C) // (TWI_IADR) Internal Address Register -#define TWI_CWGR (AT91_CAST(AT91_REG *) 0x00000010) // (TWI_CWGR) Clock Waveform Generator Register -#define TWI_SR (AT91_CAST(AT91_REG *) 0x00000020) // (TWI_SR) Status Register -#define TWI_IER (AT91_CAST(AT91_REG *) 0x00000024) // (TWI_IER) Interrupt Enable Register -#define TWI_IDR (AT91_CAST(AT91_REG *) 0x00000028) // (TWI_IDR) Interrupt Disable Register -#define TWI_IMR (AT91_CAST(AT91_REG *) 0x0000002C) // (TWI_IMR) Interrupt Mask Register -#define TWI_RHR (AT91_CAST(AT91_REG *) 0x00000030) // (TWI_RHR) Receive Holding Register -#define TWI_THR (AT91_CAST(AT91_REG *) 0x00000034) // (TWI_THR) Transmit Holding Register - -#endif -// -------- TWI_CR : (TWI Offset: 0x0) TWI Control Register -------- -#define AT91C_TWI_START (0x1 << 0) // (TWI) Send a START Condition -#define AT91C_TWI_STOP (0x1 << 1) // (TWI) Send a STOP Condition -#define AT91C_TWI_MSEN (0x1 << 2) // (TWI) TWI Master Transfer Enabled -#define AT91C_TWI_MSDIS (0x1 << 3) // (TWI) TWI Master Transfer Disabled -#define AT91C_TWI_SWRST (0x1 << 7) // (TWI) Software Reset -// -------- TWI_MMR : (TWI Offset: 0x4) TWI Master Mode Register -------- -#define AT91C_TWI_IADRSZ (0x3 << 8) // (TWI) Internal Device Address Size -#define AT91C_TWI_IADRSZ_NO (0x0 << 8) // (TWI) No internal device address -#define AT91C_TWI_IADRSZ_1_BYTE (0x1 << 8) // (TWI) One-byte internal device address -#define AT91C_TWI_IADRSZ_2_BYTE (0x2 << 8) // (TWI) Two-byte internal device address -#define AT91C_TWI_IADRSZ_3_BYTE (0x3 << 8) // (TWI) Three-byte internal device address -#define AT91C_TWI_MREAD (0x1 << 12) // (TWI) Master Read Direction -#define AT91C_TWI_DADR (0x7F << 16) // (TWI) Device Address -// -------- TWI_CWGR : (TWI Offset: 0x10) TWI Clock Waveform Generator Register -------- -#define AT91C_TWI_CLDIV (0xFF << 0) // (TWI) Clock Low Divider -#define AT91C_TWI_CHDIV (0xFF << 8) // (TWI) Clock High Divider -#define AT91C_TWI_CKDIV (0x7 << 16) // (TWI) Clock Divider -// -------- TWI_SR : (TWI Offset: 0x20) TWI Status Register -------- -#define AT91C_TWI_TXCOMP (0x1 << 0) // (TWI) Transmission Completed -#define AT91C_TWI_RXRDY (0x1 << 1) // (TWI) Receive holding register ReaDY -#define AT91C_TWI_TXRDY (0x1 << 2) // (TWI) Transmit holding register ReaDY -#define AT91C_TWI_OVRE (0x1 << 6) // (TWI) Overrun Error -#define AT91C_TWI_UNRE (0x1 << 7) // (TWI) Underrun Error -#define AT91C_TWI_NACK (0x1 << 8) // (TWI) Not Acknowledged -#define AT91C_TWI_ENDRX (0x1 << 12) // (TWI) -#define AT91C_TWI_ENDTX (0x1 << 13) // (TWI) -#define AT91C_TWI_RXBUFF (0x1 << 14) // (TWI) -#define AT91C_TWI_TXBUFE (0x1 << 15) // (TWI) -// -------- TWI_IER : (TWI Offset: 0x24) TWI Interrupt Enable Register -------- -// -------- TWI_IDR : (TWI Offset: 0x28) TWI Interrupt Disable Register -------- -// -------- TWI_IMR : (TWI Offset: 0x2c) TWI Interrupt Mask Register -------- - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Timer Counter Channel Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_TC { - AT91_REG TC_CCR; // Channel Control Register - AT91_REG TC_CMR; // Channel Mode Register (Capture Mode / Waveform Mode) - AT91_REG Reserved0[2]; // - AT91_REG TC_CV; // Counter Value - AT91_REG TC_RA; // Register A - AT91_REG TC_RB; // Register B - AT91_REG TC_RC; // Register C - AT91_REG TC_SR; // Status Register - AT91_REG TC_IER; // Interrupt Enable Register - AT91_REG TC_IDR; // Interrupt Disable Register - AT91_REG TC_IMR; // Interrupt Mask Register -} AT91S_TC, *AT91PS_TC; -#else -#define TC_CCR (AT91_CAST(AT91_REG *) 0x00000000) // (TC_CCR) Channel Control Register -#define TC_CMR (AT91_CAST(AT91_REG *) 0x00000004) // (TC_CMR) Channel Mode Register (Capture Mode / Waveform Mode) -#define TC_CV (AT91_CAST(AT91_REG *) 0x00000010) // (TC_CV) Counter Value -#define TC_RA (AT91_CAST(AT91_REG *) 0x00000014) // (TC_RA) Register A -#define TC_RB (AT91_CAST(AT91_REG *) 0x00000018) // (TC_RB) Register B -#define TC_RC (AT91_CAST(AT91_REG *) 0x0000001C) // (TC_RC) Register C -#define TC_SR (AT91_CAST(AT91_REG *) 0x00000020) // (TC_SR) Status Register -#define TC_IER (AT91_CAST(AT91_REG *) 0x00000024) // (TC_IER) Interrupt Enable Register -#define TC_IDR (AT91_CAST(AT91_REG *) 0x00000028) // (TC_IDR) Interrupt Disable Register -#define TC_IMR (AT91_CAST(AT91_REG *) 0x0000002C) // (TC_IMR) Interrupt Mask Register - -#endif -// -------- TC_CCR : (TC Offset: 0x0) TC Channel Control Register -------- -#define AT91C_TC_CLKEN (0x1 << 0) // (TC) Counter Clock Enable Command -#define AT91C_TC_CLKDIS (0x1 << 1) // (TC) Counter Clock Disable Command -#define AT91C_TC_SWTRG (0x1 << 2) // (TC) Software Trigger Command -// -------- TC_CMR : (TC Offset: 0x4) TC Channel Mode Register: Capture Mode / Waveform Mode -------- -#define AT91C_TC_CLKS (0x7 << 0) // (TC) Clock Selection -#define AT91C_TC_CLKS_TIMER_DIV1_CLOCK (0x0) // (TC) Clock selected: TIMER_DIV1_CLOCK -#define AT91C_TC_CLKS_TIMER_DIV2_CLOCK (0x1) // (TC) Clock selected: TIMER_DIV2_CLOCK -#define AT91C_TC_CLKS_TIMER_DIV3_CLOCK (0x2) // (TC) Clock selected: TIMER_DIV3_CLOCK -#define AT91C_TC_CLKS_TIMER_DIV4_CLOCK (0x3) // (TC) Clock selected: TIMER_DIV4_CLOCK -#define AT91C_TC_CLKS_TIMER_DIV5_CLOCK (0x4) // (TC) Clock selected: TIMER_DIV5_CLOCK -#define AT91C_TC_CLKS_XC0 (0x5) // (TC) Clock selected: XC0 -#define AT91C_TC_CLKS_XC1 (0x6) // (TC) Clock selected: XC1 -#define AT91C_TC_CLKS_XC2 (0x7) // (TC) Clock selected: XC2 -#define AT91C_TC_CLKI (0x1 << 3) // (TC) Clock Invert -#define AT91C_TC_BURST (0x3 << 4) // (TC) Burst Signal Selection -#define AT91C_TC_BURST_NONE (0x0 << 4) // (TC) The clock is not gated by an external signal -#define AT91C_TC_BURST_XC0 (0x1 << 4) // (TC) XC0 is ANDed with the selected clock -#define AT91C_TC_BURST_XC1 (0x2 << 4) // (TC) XC1 is ANDed with the selected clock -#define AT91C_TC_BURST_XC2 (0x3 << 4) // (TC) XC2 is ANDed with the selected clock -#define AT91C_TC_CPCSTOP (0x1 << 6) // (TC) Counter Clock Stopped with RC Compare -#define AT91C_TC_LDBSTOP (0x1 << 6) // (TC) Counter Clock Stopped with RB Loading -#define AT91C_TC_CPCDIS (0x1 << 7) // (TC) Counter Clock Disable with RC Compare -#define AT91C_TC_LDBDIS (0x1 << 7) // (TC) Counter Clock Disabled with RB Loading -#define AT91C_TC_ETRGEDG (0x3 << 8) // (TC) External Trigger Edge Selection -#define AT91C_TC_ETRGEDG_NONE (0x0 << 8) // (TC) Edge: None -#define AT91C_TC_ETRGEDG_RISING (0x1 << 8) // (TC) Edge: rising edge -#define AT91C_TC_ETRGEDG_FALLING (0x2 << 8) // (TC) Edge: falling edge -#define AT91C_TC_ETRGEDG_BOTH (0x3 << 8) // (TC) Edge: each edge -#define AT91C_TC_EEVTEDG (0x3 << 8) // (TC) External Event Edge Selection -#define AT91C_TC_EEVTEDG_NONE (0x0 << 8) // (TC) Edge: None -#define AT91C_TC_EEVTEDG_RISING (0x1 << 8) // (TC) Edge: rising edge -#define AT91C_TC_EEVTEDG_FALLING (0x2 << 8) // (TC) Edge: falling edge -#define AT91C_TC_EEVTEDG_BOTH (0x3 << 8) // (TC) Edge: each edge -#define AT91C_TC_EEVT (0x3 << 10) // (TC) External Event Selection -#define AT91C_TC_EEVT_TIOB (0x0 << 10) // (TC) Signal selected as external event: TIOB TIOB direction: input -#define AT91C_TC_EEVT_XC0 (0x1 << 10) // (TC) Signal selected as external event: XC0 TIOB direction: output -#define AT91C_TC_EEVT_XC1 (0x2 << 10) // (TC) Signal selected as external event: XC1 TIOB direction: output -#define AT91C_TC_EEVT_XC2 (0x3 << 10) // (TC) Signal selected as external event: XC2 TIOB direction: output -#define AT91C_TC_ABETRG (0x1 << 10) // (TC) TIOA or TIOB External Trigger Selection -#define AT91C_TC_ENETRG (0x1 << 12) // (TC) External Event Trigger enable -#define AT91C_TC_WAVESEL (0x3 << 13) // (TC) Waveform Selection -#define AT91C_TC_WAVESEL_UP (0x0 << 13) // (TC) UP mode without atomatic trigger on RC Compare -#define AT91C_TC_WAVESEL_UPDOWN (0x1 << 13) // (TC) UPDOWN mode without automatic trigger on RC Compare -#define AT91C_TC_WAVESEL_UP_AUTO (0x2 << 13) // (TC) UP mode with automatic trigger on RC Compare -#define AT91C_TC_WAVESEL_UPDOWN_AUTO (0x3 << 13) // (TC) UPDOWN mode with automatic trigger on RC Compare -#define AT91C_TC_CPCTRG (0x1 << 14) // (TC) RC Compare Trigger Enable -#define AT91C_TC_WAVE (0x1 << 15) // (TC) -#define AT91C_TC_ACPA (0x3 << 16) // (TC) RA Compare Effect on TIOA -#define T91C_TC_ACPA_NONE (0x0 << 16) // (TC) Effect: none -#define AT91C_TC_ACPA_SET (0x1 << 16) // (TC) Effect: set -#define AT91C_TC_ACPA_CLEAR (0x2 << 16) // (TC) Effect: clear -#define AT91C_TC_ACPA_TOGGLE (0x3 << 16) // (TC) Effect: toggle -#define AT91C_TC_LDRA (0x3 << 16) // (TC) RA Loading Selection -#define T91C_TC_LDRA_NONE (0x0 << 16) // (TC) Edge: None -#define AT91C_TC_LDRA_RISING (0x1 << 16) // (TC) Edge: rising edge of TIOA -#define AT91C_TC_LDRA_FALLING (0x2 << 16) // (TC) Edge: falling edge of TIOA -#define AT91C_TC_LDRA_BOTH (0x3 << 16) // (TC) Edge: each edge of TIOA -#define AT91C_TC_ACPC (0x3 << 18) // (TC) RC Compare Effect on TIOA -#define AT91C_TC_ACPC_NONE (0x0 << 18) // (TC) Effect: none -#define AT91C_TC_ACPC_SET (0x1 << 18) // (TC) Effect: set -#define AT91C_TC_ACPC_CLEAR (0x2 << 18) // (TC) Effect: clear -#define AT91C_TC_ACPC_TOGGLE (0x3 << 18) // (TC) Effect: toggle -#define AT91C_TC_LDRB (0x3 << 18) // (TC) RB Loading Selection -#define AT91C_TC_LDRB_NONE (0x0 << 18) // (TC) Edge: None -#define AT91C_TC_LDRB_RISING (0x1 << 18) // (TC) Edge: rising edge of TIOA -#define AT91C_TC_LDRB_FALLING (0x2 << 18) // (TC) Edge: falling edge of TIOA -#define AT91C_TC_LDRB_BOTH (0x3 << 18) // (TC) Edge: each edge of TIOA -#define AT91C_TC_AEEVT (0x3 << 20) // (TC) External Event Effect on TIOA -#define AT91C_TC_AEEVT_NONE (0x0 << 20) // (TC) Effect: none -#define AT91C_TC_AEEVT_SET (0x1 << 20) // (TC) Effect: set -#define AT91C_TC_AEEVT_CLEAR (0x2 << 20) // (TC) Effect: clear -#define AT91C_TC_AEEVT_TOGGLE (0x3 << 20) // (TC) Effect: toggle -#define AT91C_TC_ASWTRG (0x3 << 22) // (TC) Software Trigger Effect on TIOA -#define AT91C_TC_ASWTRG_NONE (0x0 << 22) // (TC) Effect: none -#define AT91C_TC_ASWTRG_SET (0x1 << 22) // (TC) Effect: set -#define AT91C_TC_ASWTRG_CLEAR (0x2 << 22) // (TC) Effect: clear -#define AT91C_TC_ASWTRG_TOGGLE (0x3 << 22) // (TC) Effect: toggle -#define AT91C_TC_BCPB (0x3 << 24) // (TC) RB Compare Effect on TIOB -#define AT91C_TC_BCPB_NONE (0x0 << 24) // (TC) Effect: none -#define AT91C_TC_BCPB_SET (0x1 << 24) // (TC) Effect: set -#define AT91C_TC_BCPB_CLEAR (0x2 << 24) // (TC) Effect: clear -#define AT91C_TC_BCPB_TOGGLE (0x3 << 24) // (TC) Effect: toggle -#define AT91C_TC_BCPC (0x3 << 26) // (TC) RC Compare Effect on TIOB -#define AT91C_TC_BCPC_NONE (0x0 << 26) // (TC) Effect: none -#define AT91C_TC_BCPC_SET (0x1 << 26) // (TC) Effect: set -#define AT91C_TC_BCPC_CLEAR (0x2 << 26) // (TC) Effect: clear -#define AT91C_TC_BCPC_TOGGLE (0x3 << 26) // (TC) Effect: toggle -#define AT91C_TC_BEEVT (0x3 << 28) // (TC) External Event Effect on TIOB -#define AT91C_TC_BEEVT_NONE (0x0 << 28) // (TC) Effect: none -#define AT91C_TC_BEEVT_SET (0x1 << 28) // (TC) Effect: set -#define AT91C_TC_BEEVT_CLEAR (0x2 << 28) // (TC) Effect: clear -#define AT91C_TC_BEEVT_TOGGLE (0x3 << 28) // (TC) Effect: toggle -#define AT91C_TC_BSWTRG (0x3 << 30) // (TC) Software Trigger Effect on TIOB -#define AT91C_TC_BSWTRG_NONE (0x0 << 30) // (TC) Effect: none -#define AT91C_TC_BSWTRG_SET (0x1 << 30) // (TC) Effect: set -#define AT91C_TC_BSWTRG_CLEAR (0x2 << 30) // (TC) Effect: clear -#define AT91C_TC_BSWTRG_TOGGLE (0x3 << 30) // (TC) Effect: toggle -// -------- TC_SR : (TC Offset: 0x20) TC Channel Status Register -------- -#define AT91C_TC_COVFS (0x1 << 0) // (TC) Counter Overflow -#define AT91C_TC_LOVRS (0x1 << 1) // (TC) Load Overrun -#define AT91C_TC_CPAS (0x1 << 2) // (TC) RA Compare -#define AT91C_TC_CPBS (0x1 << 3) // (TC) RB Compare -#define AT91C_TC_CPCS (0x1 << 4) // (TC) RC Compare -#define AT91C_TC_LDRAS (0x1 << 5) // (TC) RA Loading -#define AT91C_TC_LDRBS (0x1 << 6) // (TC) RB Loading -#define AT91C_TC_ETRGS (0x1 << 7) // (TC) External Trigger -#define AT91C_TC_CLKSTA (0x1 << 16) // (TC) Clock Enabling -#define AT91C_TC_MTIOA (0x1 << 17) // (TC) TIOA Mirror -#define AT91C_TC_MTIOB (0x1 << 18) // (TC) TIOA Mirror -// -------- TC_IER : (TC Offset: 0x24) TC Channel Interrupt Enable Register -------- -// -------- TC_IDR : (TC Offset: 0x28) TC Channel Interrupt Disable Register -------- -// -------- TC_IMR : (TC Offset: 0x2c) TC Channel Interrupt Mask Register -------- - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Timer Counter Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_TCB { - AT91S_TC TCB_TC0; // TC Channel 0 - AT91_REG Reserved0[4]; // - AT91S_TC TCB_TC1; // TC Channel 1 - AT91_REG Reserved1[4]; // - AT91S_TC TCB_TC2; // TC Channel 2 - AT91_REG Reserved2[4]; // - AT91_REG TCB_BCR; // TC Block Control Register - AT91_REG TCB_BMR; // TC Block Mode Register -} AT91S_TCB, *AT91PS_TCB; -#else -#define TCB_BCR (AT91_CAST(AT91_REG *) 0x000000C0) // (TCB_BCR) TC Block Control Register -#define TCB_BMR (AT91_CAST(AT91_REG *) 0x000000C4) // (TCB_BMR) TC Block Mode Register - -#endif -// -------- TCB_BCR : (TCB Offset: 0xc0) TC Block Control Register -------- -#define AT91C_TCB_SYNC (0x1 << 0) // (TCB) Synchro Command -// -------- TCB_BMR : (TCB Offset: 0xc4) TC Block Mode Register -------- -#define AT91C_TCB_TC0XC0S (0x3 << 0) // (TCB) External Clock Signal 0 Selection -#define AT91C_TCB_TC0XC0S_TCLK0 (0x0) // (TCB) TCLK0 connected to XC0 -#define AT91C_TCB_TC0XC0S_NONE (0x1) // (TCB) None signal connected to XC0 -#define AT91C_TCB_TC0XC0S_TIOA1 (0x2) // (TCB) TIOA1 connected to XC0 -#define AT91C_TCB_TC0XC0S_TIOA2 (0x3) // (TCB) TIOA2 connected to XC0 -#define AT91C_TCB_TC1XC1S (0x3 << 2) // (TCB) External Clock Signal 1 Selection -#define AT91C_TCB_TC1XC1S_TCLK1 (0x0 << 2) // (TCB) TCLK1 connected to XC1 -#define AT91C_TCB_TC1XC1S_NONE (0x1 << 2) // (TCB) None signal connected to XC1 -#define AT91C_TCB_TC1XC1S_TIOA0 (0x2 << 2) // (TCB) TIOA0 connected to XC1 -#define AT91C_TCB_TC1XC1S_TIOA2 (0x3 << 2) // (TCB) TIOA2 connected to XC1 -#define AT91C_TCB_TC2XC2S (0x3 << 4) // (TCB) External Clock Signal 2 Selection -#define AT91C_TCB_TC2XC2S_TCLK2 (0x0 << 4) // (TCB) TCLK2 connected to XC2 -#define AT91C_TCB_TC2XC2S_NONE (0x1 << 4) // (TCB) None signal connected to XC2 -#define AT91C_TCB_TC2XC2S_TIOA0 (0x2 << 4) // (TCB) TIOA0 connected to XC2 -#define AT91C_TCB_TC2XC2S_TIOA1 (0x3 << 4) // (TCB) TIOA2 connected to XC2 - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR PWMC Channel Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_PWMC_CH { - AT91_REG PWMC_CMR; // Channel Mode Register - AT91_REG PWMC_CDTYR; // Channel Duty Cycle Register - AT91_REG PWMC_CPRDR; // Channel Period Register - AT91_REG PWMC_CCNTR; // Channel Counter Register - AT91_REG PWMC_CUPDR; // Channel Update Register - AT91_REG PWMC_Reserved[3]; // Reserved -} AT91S_PWMC_CH, *AT91PS_PWMC_CH; -#else -#define PWMC_CMR (AT91_CAST(AT91_REG *) 0x00000000) // (PWMC_CMR) Channel Mode Register -#define PWMC_CDTYR (AT91_CAST(AT91_REG *) 0x00000004) // (PWMC_CDTYR) Channel Duty Cycle Register -#define PWMC_CPRDR (AT91_CAST(AT91_REG *) 0x00000008) // (PWMC_CPRDR) Channel Period Register -#define PWMC_CCNTR (AT91_CAST(AT91_REG *) 0x0000000C) // (PWMC_CCNTR) Channel Counter Register -#define PWMC_CUPDR (AT91_CAST(AT91_REG *) 0x00000010) // (PWMC_CUPDR) Channel Update Register -#define Reserved (AT91_CAST(AT91_REG *) 0x00000014) // (Reserved) Reserved - -#endif -// -------- PWMC_CMR : (PWMC_CH Offset: 0x0) PWMC Channel Mode Register -------- -#define AT91C_PWMC_CPRE (0xF << 0) // (PWMC_CH) Channel Pre-scaler : PWMC_CLKx -#define AT91C_PWMC_CPRE_MCK (0x0) // (PWMC_CH) -#define AT91C_PWMC_CPRE_MCKA (0xB) // (PWMC_CH) -#define AT91C_PWMC_CPRE_MCKB (0xC) // (PWMC_CH) -#define AT91C_PWMC_CALG (0x1 << 8) // (PWMC_CH) Channel Alignment -#define AT91C_PWMC_CPOL (0x1 << 9) // (PWMC_CH) Channel Polarity -#define AT91C_PWMC_CPD (0x1 << 10) // (PWMC_CH) Channel Update Period -// -------- PWMC_CDTYR : (PWMC_CH Offset: 0x4) PWMC Channel Duty Cycle Register -------- -#define AT91C_PWMC_CDTY (0x0 << 0) // (PWMC_CH) Channel Duty Cycle -// -------- PWMC_CPRDR : (PWMC_CH Offset: 0x8) PWMC Channel Period Register -------- -#define AT91C_PWMC_CPRD (0x0 << 0) // (PWMC_CH) Channel Period -// -------- PWMC_CCNTR : (PWMC_CH Offset: 0xc) PWMC Channel Counter Register -------- -#define AT91C_PWMC_CCNT (0x0 << 0) // (PWMC_CH) Channel Counter -// -------- PWMC_CUPDR : (PWMC_CH Offset: 0x10) PWMC Channel Update Register -------- -#define AT91C_PWMC_CUPD (0x0 << 0) // (PWMC_CH) Channel Update - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR Pulse Width Modulation Controller Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_PWMC { - AT91_REG PWMC_MR; // PWMC Mode Register - AT91_REG PWMC_ENA; // PWMC Enable Register - AT91_REG PWMC_DIS; // PWMC Disable Register - AT91_REG PWMC_SR; // PWMC Status Register - AT91_REG PWMC_IER; // PWMC Interrupt Enable Register - AT91_REG PWMC_IDR; // PWMC Interrupt Disable Register - AT91_REG PWMC_IMR; // PWMC Interrupt Mask Register - AT91_REG PWMC_ISR; // PWMC Interrupt Status Register - AT91_REG Reserved0[55]; // - AT91_REG PWMC_VR; // PWMC Version Register - AT91_REG Reserved1[64]; // - AT91S_PWMC_CH PWMC_CH[4]; // PWMC Channel -} AT91S_PWMC, *AT91PS_PWMC; -#else -#define PWMC_MR (AT91_CAST(AT91_REG *) 0x00000000) // (PWMC_MR) PWMC Mode Register -#define PWMC_ENA (AT91_CAST(AT91_REG *) 0x00000004) // (PWMC_ENA) PWMC Enable Register -#define PWMC_DIS (AT91_CAST(AT91_REG *) 0x00000008) // (PWMC_DIS) PWMC Disable Register -#define PWMC_SR (AT91_CAST(AT91_REG *) 0x0000000C) // (PWMC_SR) PWMC Status Register -#define PWMC_IER (AT91_CAST(AT91_REG *) 0x00000010) // (PWMC_IER) PWMC Interrupt Enable Register -#define PWMC_IDR (AT91_CAST(AT91_REG *) 0x00000014) // (PWMC_IDR) PWMC Interrupt Disable Register -#define PWMC_IMR (AT91_CAST(AT91_REG *) 0x00000018) // (PWMC_IMR) PWMC Interrupt Mask Register -#define PWMC_ISR (AT91_CAST(AT91_REG *) 0x0000001C) // (PWMC_ISR) PWMC Interrupt Status Register -#define PWMC_VR (AT91_CAST(AT91_REG *) 0x000000FC) // (PWMC_VR) PWMC Version Register - -#endif -// -------- PWMC_MR : (PWMC Offset: 0x0) PWMC Mode Register -------- -#define AT91C_PWMC_DIVA (0xFF << 0) // (PWMC) CLKA divide factor. -#define AT91C_PWMC_PREA (0xF << 8) // (PWMC) Divider Input Clock Prescaler A -#define AT91C_PWMC_PREA_MCK (0x0 << 8) // (PWMC) -#define AT91C_PWMC_DIVB (0xFF << 16) // (PWMC) CLKB divide factor. -#define AT91C_PWMC_PREB (0xF << 24) // (PWMC) Divider Input Clock Prescaler B -#define AT91C_PWMC_PREB_MCK (0x0 << 24) // (PWMC) -// -------- PWMC_ENA : (PWMC Offset: 0x4) PWMC Enable Register -------- -#define AT91C_PWMC_CHID0 (0x1 << 0) // (PWMC) Channel ID 0 -#define AT91C_PWMC_CHID1 (0x1 << 1) // (PWMC) Channel ID 1 -#define AT91C_PWMC_CHID2 (0x1 << 2) // (PWMC) Channel ID 2 -#define AT91C_PWMC_CHID3 (0x1 << 3) // (PWMC) Channel ID 3 -// -------- PWMC_DIS : (PWMC Offset: 0x8) PWMC Disable Register -------- -// -------- PWMC_SR : (PWMC Offset: 0xc) PWMC Status Register -------- -// -------- PWMC_IER : (PWMC Offset: 0x10) PWMC Interrupt Enable Register -------- -// -------- PWMC_IDR : (PWMC Offset: 0x14) PWMC Interrupt Disable Register -------- -// -------- PWMC_IMR : (PWMC Offset: 0x18) PWMC Interrupt Mask Register -------- -// -------- PWMC_ISR : (PWMC Offset: 0x1c) PWMC Interrupt Status Register -------- - -// ***************************************************************************** -// SOFTWARE API DEFINITION FOR USB Device Interface -// ***************************************************************************** -#ifndef __ASSEMBLY__ -typedef struct _AT91S_UDP { - AT91_REG UDP_NUM; // Frame Number Register - AT91_REG UDP_GLBSTATE; // Global State Register - AT91_REG UDP_FADDR; // Function Address Register - AT91_REG Reserved0[1]; // - AT91_REG UDP_IER; // Interrupt Enable Register - AT91_REG UDP_IDR; // Interrupt Disable Register - AT91_REG UDP_IMR; // Interrupt Mask Register - AT91_REG UDP_ISR; // Interrupt Status Register - AT91_REG UDP_ICR; // Interrupt Clear Register - AT91_REG Reserved1[1]; // - AT91_REG UDP_RSTEP; // Reset Endpoint Register - AT91_REG Reserved2[1]; // - AT91_REG UDP_CSR[4]; // Endpoint Control and Status Register - AT91_REG Reserved3[4]; // - AT91_REG UDP_FDR[4]; // Endpoint FIFO Data Register - AT91_REG Reserved4[5]; // - AT91_REG UDP_TXVC; // Transceiver Control Register -} AT91S_UDP, *AT91PS_UDP; -#else -#define UDP_FRM_NUM (AT91_CAST(AT91_REG *) 0x00000000) // (UDP_FRM_NUM) Frame Number Register -#define UDP_GLBSTATE (AT91_CAST(AT91_REG *) 0x00000004) // (UDP_GLBSTATE) Global State Register -#define UDP_FADDR (AT91_CAST(AT91_REG *) 0x00000008) // (UDP_FADDR) Function Address Register -#define UDP_IER (AT91_CAST(AT91_REG *) 0x00000010) // (UDP_IER) Interrupt Enable Register -#define UDP_IDR (AT91_CAST(AT91_REG *) 0x00000014) // (UDP_IDR) Interrupt Disable Register -#define UDP_IMR (AT91_CAST(AT91_REG *) 0x00000018) // (UDP_IMR) Interrupt Mask Register -#define UDP_ISR (AT91_CAST(AT91_REG *) 0x0000001C) // (UDP_ISR) Interrupt Status Register -#define UDP_ICR (AT91_CAST(AT91_REG *) 0x00000020) // (UDP_ICR) Interrupt Clear Register -#define UDP_RSTEP (AT91_CAST(AT91_REG *) 0x00000028) // (UDP_RSTEP) Reset Endpoint Register -#define UDP_CSR (AT91_CAST(AT91_REG *) 0x00000030) // (UDP_CSR) Endpoint Control and Status Register -#define UDP_FDR (AT91_CAST(AT91_REG *) 0x00000050) // (UDP_FDR) Endpoint FIFO Data Register -#define UDP_TXVC (AT91_CAST(AT91_REG *) 0x00000074) // (UDP_TXVC) Transceiver Control Register - -#endif -// -------- UDP_FRM_NUM : (UDP Offset: 0x0) USB Frame Number Register -------- -#define AT91C_UDP_FRM_NUM (0x7FF << 0) // (UDP) Frame Number as Defined in the Packet Field Formats -#define AT91C_UDP_FRM_ERR (0x1 << 16) // (UDP) Frame Error -#define AT91C_UDP_FRM_OK (0x1 << 17) // (UDP) Frame OK -// -------- UDP_GLB_STATE : (UDP Offset: 0x4) USB Global State Register -------- -#define AT91C_UDP_FADDEN (0x1 << 0) // (UDP) Function Address Enable -#define AT91C_UDP_CONFG (0x1 << 1) // (UDP) Configured -#define AT91C_UDP_ESR (0x1 << 2) // (UDP) Enable Send Resume -#define AT91C_UDP_RSMINPR (0x1 << 3) // (UDP) A Resume Has Been Sent to the Host -#define AT91C_UDP_RMWUPE (0x1 << 4) // (UDP) Remote Wake Up Enable -// -------- UDP_FADDR : (UDP Offset: 0x8) USB Function Address Register -------- -#define AT91C_UDP_FADD (0xFF << 0) // (UDP) Function Address Value -#define AT91C_UDP_FEN (0x1 << 8) // (UDP) Function Enable -// -------- UDP_IER : (UDP Offset: 0x10) USB Interrupt Enable Register -------- -#define AT91C_UDP_EPINT0 (0x1 << 0) // (UDP) Endpoint 0 Interrupt -#define AT91C_UDP_EPINT1 (0x1 << 1) // (UDP) Endpoint 0 Interrupt -#define AT91C_UDP_EPINT2 (0x1 << 2) // (UDP) Endpoint 2 Interrupt -#define AT91C_UDP_EPINT3 (0x1 << 3) // (UDP) Endpoint 3 Interrupt -#define AT91C_UDP_RXSUSP (0x1 << 8) // (UDP) USB Suspend Interrupt -#define AT91C_UDP_RXRSM (0x1 << 9) // (UDP) USB Resume Interrupt -#define AT91C_UDP_EXTRSM (0x1 << 10) // (UDP) USB External Resume Interrupt -#define AT91C_UDP_SOFINT (0x1 << 11) // (UDP) USB Start Of frame Interrupt -#define AT91C_UDP_WAKEUP (0x1 << 13) // (UDP) USB Resume Interrupt -// -------- UDP_IDR : (UDP Offset: 0x14) USB Interrupt Disable Register -------- -// -------- UDP_IMR : (UDP Offset: 0x18) USB Interrupt Mask Register -------- -// -------- UDP_ISR : (UDP Offset: 0x1c) USB Interrupt Status Register -------- -#define AT91C_UDP_ENDBUSRES (0x1 << 12) // (UDP) USB End Of Bus Reset Interrupt -// -------- UDP_ICR : (UDP Offset: 0x20) USB Interrupt Clear Register -------- -// -------- UDP_RST_EP : (UDP Offset: 0x28) USB Reset Endpoint Register -------- -#define AT91C_UDP_EP0 (0x1 << 0) // (UDP) Reset Endpoint 0 -#define AT91C_UDP_EP1 (0x1 << 1) // (UDP) Reset Endpoint 1 -#define AT91C_UDP_EP2 (0x1 << 2) // (UDP) Reset Endpoint 2 -#define AT91C_UDP_EP3 (0x1 << 3) // (UDP) Reset Endpoint 3 -// -------- UDP_CSR : (UDP Offset: 0x30) USB Endpoint Control and Status Register -------- -#define AT91C_UDP_TXCOMP (0x1 << 0) // (UDP) Generates an IN packet with data previously written in the DPR -#define AT91C_UDP_RX_DATA_BK0 (0x1 << 1) // (UDP) Receive Data Bank 0 -#define AT91C_UDP_RXSETUP (0x1 << 2) // (UDP) Sends STALL to the Host (Control endpoints) -#define AT91C_UDP_ISOERROR (0x1 << 3) // (UDP) Isochronous error (Isochronous endpoints) -#define AT91C_UDP_STALLSENT (0x1 << 3) // (UDP) Stall sent (Control, bulk, interrupt endpoints) -#define AT91C_UDP_TXPKTRDY (0x1 << 4) // (UDP) Transmit Packet Ready -#define AT91C_UDP_FORCESTALL (0x1 << 5) // (UDP) Force Stall (used by Control, Bulk and Isochronous endpoints). -#define AT91C_UDP_RX_DATA_BK1 (0x1 << 6) // (UDP) Receive Data Bank 1 (only used by endpoints with ping-pong attributes). -#define AT91C_UDP_DIR (0x1 << 7) // (UDP) Transfer Direction -#define AT91C_UDP_EPTYPE (0x7 << 8) // (UDP) Endpoint type -#define AT91C_UDP_EPTYPE_CTRL (0x0 << 8) // (UDP) Control -#define AT91C_UDP_EPTYPE_ISO_OUT (0x1 << 8) // (UDP) Isochronous OUT -#define AT91C_UDP_EPTYPE_BULK_OUT (0x2 << 8) // (UDP) Bulk OUT -#define AT91C_UDP_EPTYPE_INT_OUT (0x3 << 8) // (UDP) Interrupt OUT -#define AT91C_UDP_EPTYPE_ISO_IN (0x5 << 8) // (UDP) Isochronous IN -#define AT91C_UDP_EPTYPE_BULK_IN (0x6 << 8) // (UDP) Bulk IN -#define AT91C_UDP_EPTYPE_INT_IN (0x7 << 8) // (UDP) Interrupt IN -#define AT91C_UDP_DTGLE (0x1 << 11) // (UDP) Data Toggle -#define AT91C_UDP_EPEDS (0x1 << 15) // (UDP) Endpoint Enable Disable -#define AT91C_UDP_RXBYTECNT (0x7FF << 16) // (UDP) Number Of Bytes Available in the FIFO -// -------- UDP_TXVC : (UDP Offset: 0x74) Transceiver Control Register -------- -#define AT91C_UDP_TXVDIS (0x1 << 8) // (UDP) - -// ***************************************************************************** -// REGISTER ADDRESS DEFINITION FOR AT91SAM7S512 -// ***************************************************************************** -// ========== Register definition for SYS peripheral ========== -// ========== Register definition for AIC peripheral ========== -#define AT91C_AIC_IVR (AT91_CAST(AT91_REG *) 0xFFFFF100) // (AIC) IRQ Vector Register -#define AT91C_AIC_SMR (AT91_CAST(AT91_REG *) 0xFFFFF000) // (AIC) Source Mode Register -#define AT91C_AIC_FVR (AT91_CAST(AT91_REG *) 0xFFFFF104) // (AIC) FIQ Vector Register -#define AT91C_AIC_DCR (AT91_CAST(AT91_REG *) 0xFFFFF138) // (AIC) Debug Control Register (Protect) -#define AT91C_AIC_EOICR (AT91_CAST(AT91_REG *) 0xFFFFF130) // (AIC) End of Interrupt Command Register -#define AT91C_AIC_SVR (AT91_CAST(AT91_REG *) 0xFFFFF080) // (AIC) Source Vector Register -#define AT91C_AIC_FFSR (AT91_CAST(AT91_REG *) 0xFFFFF148) // (AIC) Fast Forcing Status Register -#define AT91C_AIC_ICCR (AT91_CAST(AT91_REG *) 0xFFFFF128) // (AIC) Interrupt Clear Command Register -#define AT91C_AIC_ISR (AT91_CAST(AT91_REG *) 0xFFFFF108) // (AIC) Interrupt Status Register -#define AT91C_AIC_IMR (AT91_CAST(AT91_REG *) 0xFFFFF110) // (AIC) Interrupt Mask Register -#define AT91C_AIC_IPR (AT91_CAST(AT91_REG *) 0xFFFFF10C) // (AIC) Interrupt Pending Register -#define AT91C_AIC_FFER (AT91_CAST(AT91_REG *) 0xFFFFF140) // (AIC) Fast Forcing Enable Register -#define AT91C_AIC_IECR (AT91_CAST(AT91_REG *) 0xFFFFF120) // (AIC) Interrupt Enable Command Register -#define AT91C_AIC_ISCR (AT91_CAST(AT91_REG *) 0xFFFFF12C) // (AIC) Interrupt Set Command Register -#define AT91C_AIC_FFDR (AT91_CAST(AT91_REG *) 0xFFFFF144) // (AIC) Fast Forcing Disable Register -#define AT91C_AIC_CISR (AT91_CAST(AT91_REG *) 0xFFFFF114) // (AIC) Core Interrupt Status Register -#define AT91C_AIC_IDCR (AT91_CAST(AT91_REG *) 0xFFFFF124) // (AIC) Interrupt Disable Command Register -#define AT91C_AIC_SPU (AT91_CAST(AT91_REG *) 0xFFFFF134) // (AIC) Spurious Vector Register -// ========== Register definition for PDC_DBGU peripheral ========== -#define AT91C_DBGU_TCR (AT91_CAST(AT91_REG *) 0xFFFFF30C) // (PDC_DBGU) Transmit Counter Register -#define AT91C_DBGU_RNPR (AT91_CAST(AT91_REG *) 0xFFFFF310) // (PDC_DBGU) Receive Next Pointer Register -#define AT91C_DBGU_TNPR (AT91_CAST(AT91_REG *) 0xFFFFF318) // (PDC_DBGU) Transmit Next Pointer Register -#define AT91C_DBGU_TPR (AT91_CAST(AT91_REG *) 0xFFFFF308) // (PDC_DBGU) Transmit Pointer Register -#define AT91C_DBGU_RPR (AT91_CAST(AT91_REG *) 0xFFFFF300) // (PDC_DBGU) Receive Pointer Register -#define AT91C_DBGU_RCR (AT91_CAST(AT91_REG *) 0xFFFFF304) // (PDC_DBGU) Receive Counter Register -#define AT91C_DBGU_RNCR (AT91_CAST(AT91_REG *) 0xFFFFF314) // (PDC_DBGU) Receive Next Counter Register -#define AT91C_DBGU_PTCR (AT91_CAST(AT91_REG *) 0xFFFFF320) // (PDC_DBGU) PDC Transfer Control Register -#define AT91C_DBGU_PTSR (AT91_CAST(AT91_REG *) 0xFFFFF324) // (PDC_DBGU) PDC Transfer Status Register -#define AT91C_DBGU_TNCR (AT91_CAST(AT91_REG *) 0xFFFFF31C) // (PDC_DBGU) Transmit Next Counter Register -// ========== Register definition for DBGU peripheral ========== -#define AT91C_DBGU_EXID (AT91_CAST(AT91_REG *) 0xFFFFF244) // (DBGU) Chip ID Extension Register -#define AT91C_DBGU_BRGR (AT91_CAST(AT91_REG *) 0xFFFFF220) // (DBGU) Baud Rate Generator Register -#define AT91C_DBGU_IDR (AT91_CAST(AT91_REG *) 0xFFFFF20C) // (DBGU) Interrupt Disable Register -#define AT91C_DBGU_CSR (AT91_CAST(AT91_REG *) 0xFFFFF214) // (DBGU) Channel Status Register -#define AT91C_DBGU_CIDR (AT91_CAST(AT91_REG *) 0xFFFFF240) // (DBGU) Chip ID Register -#define AT91C_DBGU_MR (AT91_CAST(AT91_REG *) 0xFFFFF204) // (DBGU) Mode Register -#define AT91C_DBGU_IMR (AT91_CAST(AT91_REG *) 0xFFFFF210) // (DBGU) Interrupt Mask Register -#define AT91C_DBGU_CR (AT91_CAST(AT91_REG *) 0xFFFFF200) // (DBGU) Control Register -#define AT91C_DBGU_FNTR (AT91_CAST(AT91_REG *) 0xFFFFF248) // (DBGU) Force NTRST Register -#define AT91C_DBGU_THR (AT91_CAST(AT91_REG *) 0xFFFFF21C) // (DBGU) Transmitter Holding Register -#define AT91C_DBGU_RHR (AT91_CAST(AT91_REG *) 0xFFFFF218) // (DBGU) Receiver Holding Register -#define AT91C_DBGU_IER (AT91_CAST(AT91_REG *) 0xFFFFF208) // (DBGU) Interrupt Enable Register -// ========== Register definition for PIOA peripheral ========== -#define AT91C_PIOA_ODR (AT91_CAST(AT91_REG *) 0xFFFFF414) // (PIOA) Output Disable Registerr -#define AT91C_PIOA_SODR (AT91_CAST(AT91_REG *) 0xFFFFF430) // (PIOA) Set Output Data Register -#define AT91C_PIOA_ISR (AT91_CAST(AT91_REG *) 0xFFFFF44C) // (PIOA) Interrupt Status Register -#define AT91C_PIOA_ABSR (AT91_CAST(AT91_REG *) 0xFFFFF478) // (PIOA) AB Select Status Register -#define AT91C_PIOA_IER (AT91_CAST(AT91_REG *) 0xFFFFF440) // (PIOA) Interrupt Enable Register -#define AT91C_PIOA_PPUDR (AT91_CAST(AT91_REG *) 0xFFFFF460) // (PIOA) Pull-up Disable Register -#define AT91C_PIOA_IMR (AT91_CAST(AT91_REG *) 0xFFFFF448) // (PIOA) Interrupt Mask Register -#define AT91C_PIOA_PER (AT91_CAST(AT91_REG *) 0xFFFFF400) // (PIOA) PIO Enable Register -#define AT91C_PIOA_IFDR (AT91_CAST(AT91_REG *) 0xFFFFF424) // (PIOA) Input Filter Disable Register -#define AT91C_PIOA_OWDR (AT91_CAST(AT91_REG *) 0xFFFFF4A4) // (PIOA) Output Write Disable Register -#define AT91C_PIOA_MDSR (AT91_CAST(AT91_REG *) 0xFFFFF458) // (PIOA) Multi-driver Status Register -#define AT91C_PIOA_IDR (AT91_CAST(AT91_REG *) 0xFFFFF444) // (PIOA) Interrupt Disable Register -#define AT91C_PIOA_ODSR (AT91_CAST(AT91_REG *) 0xFFFFF438) // (PIOA) Output Data Status Register -#define AT91C_PIOA_PPUSR (AT91_CAST(AT91_REG *) 0xFFFFF468) // (PIOA) Pull-up Status Register -#define AT91C_PIOA_OWSR (AT91_CAST(AT91_REG *) 0xFFFFF4A8) // (PIOA) Output Write Status Register -#define AT91C_PIOA_BSR (AT91_CAST(AT91_REG *) 0xFFFFF474) // (PIOA) Select B Register -#define AT91C_PIOA_OWER (AT91_CAST(AT91_REG *) 0xFFFFF4A0) // (PIOA) Output Write Enable Register -#define AT91C_PIOA_IFER (AT91_CAST(AT91_REG *) 0xFFFFF420) // (PIOA) Input Filter Enable Register -#define AT91C_PIOA_PDSR (AT91_CAST(AT91_REG *) 0xFFFFF43C) // (PIOA) Pin Data Status Register -#define AT91C_PIOA_PPUER (AT91_CAST(AT91_REG *) 0xFFFFF464) // (PIOA) Pull-up Enable Register -#define AT91C_PIOA_OSR (AT91_CAST(AT91_REG *) 0xFFFFF418) // (PIOA) Output Status Register -#define AT91C_PIOA_ASR (AT91_CAST(AT91_REG *) 0xFFFFF470) // (PIOA) Select A Register -#define AT91C_PIOA_MDDR (AT91_CAST(AT91_REG *) 0xFFFFF454) // (PIOA) Multi-driver Disable Register -#define AT91C_PIOA_CODR (AT91_CAST(AT91_REG *) 0xFFFFF434) // (PIOA) Clear Output Data Register -#define AT91C_PIOA_MDER (AT91_CAST(AT91_REG *) 0xFFFFF450) // (PIOA) Multi-driver Enable Register -#define AT91C_PIOA_PDR (AT91_CAST(AT91_REG *) 0xFFFFF404) // (PIOA) PIO Disable Register -#define AT91C_PIOA_IFSR (AT91_CAST(AT91_REG *) 0xFFFFF428) // (PIOA) Input Filter Status Register -#define AT91C_PIOA_OER (AT91_CAST(AT91_REG *) 0xFFFFF410) // (PIOA) Output Enable Register -#define AT91C_PIOA_PSR (AT91_CAST(AT91_REG *) 0xFFFFF408) // (PIOA) PIO Status Register -// ========== Register definition for CKGR peripheral ========== -#define AT91C_CKGR_MOR (AT91_CAST(AT91_REG *) 0xFFFFFC20) // (CKGR) Main Oscillator Register -#define AT91C_CKGR_PLLR (AT91_CAST(AT91_REG *) 0xFFFFFC2C) // (CKGR) PLL Register -#define AT91C_CKGR_MCFR (AT91_CAST(AT91_REG *) 0xFFFFFC24) // (CKGR) Main Clock Frequency Register -// ========== Register definition for PMC peripheral ========== -#define AT91C_PMC_IDR (AT91_CAST(AT91_REG *) 0xFFFFFC64) // (PMC) Interrupt Disable Register -#define AT91C_PMC_MOR (AT91_CAST(AT91_REG *) 0xFFFFFC20) // (PMC) Main Oscillator Register -#define AT91C_PMC_PLLR (AT91_CAST(AT91_REG *) 0xFFFFFC2C) // (PMC) PLL Register -#define AT91C_PMC_PCER (AT91_CAST(AT91_REG *) 0xFFFFFC10) // (PMC) Peripheral Clock Enable Register -#define AT91C_PMC_PCKR (AT91_CAST(AT91_REG *) 0xFFFFFC40) // (PMC) Programmable Clock Register -#define AT91C_PMC_MCKR (AT91_CAST(AT91_REG *) 0xFFFFFC30) // (PMC) Master Clock Register -#define AT91C_PMC_SCDR (AT91_CAST(AT91_REG *) 0xFFFFFC04) // (PMC) System Clock Disable Register -#define AT91C_PMC_PCDR (AT91_CAST(AT91_REG *) 0xFFFFFC14) // (PMC) Peripheral Clock Disable Register -#define AT91C_PMC_SCSR (AT91_CAST(AT91_REG *) 0xFFFFFC08) // (PMC) System Clock Status Register -#define AT91C_PMC_PCSR (AT91_CAST(AT91_REG *) 0xFFFFFC18) // (PMC) Peripheral Clock Status Register -#define AT91C_PMC_MCFR (AT91_CAST(AT91_REG *) 0xFFFFFC24) // (PMC) Main Clock Frequency Register -#define AT91C_PMC_SCER (AT91_CAST(AT91_REG *) 0xFFFFFC00) // (PMC) System Clock Enable Register -#define AT91C_PMC_IMR (AT91_CAST(AT91_REG *) 0xFFFFFC6C) // (PMC) Interrupt Mask Register -#define AT91C_PMC_IER (AT91_CAST(AT91_REG *) 0xFFFFFC60) // (PMC) Interrupt Enable Register -#define AT91C_PMC_SR (AT91_CAST(AT91_REG *) 0xFFFFFC68) // (PMC) Status Register -// ========== Register definition for RSTC peripheral ========== -#define AT91C_RSTC_RCR (AT91_CAST(AT91_REG *) 0xFFFFFD00) // (RSTC) Reset Control Register -#define AT91C_RSTC_RMR (AT91_CAST(AT91_REG *) 0xFFFFFD08) // (RSTC) Reset Mode Register -#define AT91C_RSTC_RSR (AT91_CAST(AT91_REG *) 0xFFFFFD04) // (RSTC) Reset Status Register -// ========== Register definition for RTTC peripheral ========== -#define AT91C_RTTC_RTSR (AT91_CAST(AT91_REG *) 0xFFFFFD2C) // (RTTC) Real-time Status Register -#define AT91C_RTTC_RTMR (AT91_CAST(AT91_REG *) 0xFFFFFD20) // (RTTC) Real-time Mode Register -#define AT91C_RTTC_RTVR (AT91_CAST(AT91_REG *) 0xFFFFFD28) // (RTTC) Real-time Value Register -#define AT91C_RTTC_RTAR (AT91_CAST(AT91_REG *) 0xFFFFFD24) // (RTTC) Real-time Alarm Register -// ========== Register definition for PITC peripheral ========== -#define AT91C_PITC_PIVR (AT91_CAST(AT91_REG *) 0xFFFFFD38) // (PITC) Period Interval Value Register -#define AT91C_PITC_PISR (AT91_CAST(AT91_REG *) 0xFFFFFD34) // (PITC) Period Interval Status Register -#define AT91C_PITC_PIIR (AT91_CAST(AT91_REG *) 0xFFFFFD3C) // (PITC) Period Interval Image Register -#define AT91C_PITC_PIMR (AT91_CAST(AT91_REG *) 0xFFFFFD30) // (PITC) Period Interval Mode Register -// ========== Register definition for WDTC peripheral ========== -#define AT91C_WDTC_WDCR (AT91_CAST(AT91_REG *) 0xFFFFFD40) // (WDTC) Watchdog Control Register -#define AT91C_WDTC_WDSR (AT91_CAST(AT91_REG *) 0xFFFFFD48) // (WDTC) Watchdog Status Register -#define AT91C_WDTC_WDMR (AT91_CAST(AT91_REG *) 0xFFFFFD44) // (WDTC) Watchdog Mode Register -// ========== Register definition for VREG peripheral ========== -#define AT91C_VREG_MR (AT91_CAST(AT91_REG *) 0xFFFFFD60) // (VREG) Voltage Regulator Mode Register -// ========== Register definition for EFC0 peripheral ========== -#define AT91C_EFC0_FCR (AT91_CAST(AT91_REG *) 0xFFFFFF64) // (EFC0) MC Flash Command Register -#define AT91C_EFC0_FSR (AT91_CAST(AT91_REG *) 0xFFFFFF68) // (EFC0) MC Flash Status Register -#define AT91C_EFC0_VR (AT91_CAST(AT91_REG *) 0xFFFFFF6C) // (EFC0) MC Flash Version Register -#define AT91C_EFC0_FMR (AT91_CAST(AT91_REG *) 0xFFFFFF60) // (EFC0) MC Flash Mode Register -// ========== Register definition for EFC1 peripheral ========== -#define AT91C_EFC1_VR (AT91_CAST(AT91_REG *) 0xFFFFFF7C) // (EFC1) MC Flash Version Register -#define AT91C_EFC1_FCR (AT91_CAST(AT91_REG *) 0xFFFFFF74) // (EFC1) MC Flash Command Register -#define AT91C_EFC1_FSR (AT91_CAST(AT91_REG *) 0xFFFFFF78) // (EFC1) MC Flash Status Register -#define AT91C_EFC1_FMR (AT91_CAST(AT91_REG *) 0xFFFFFF70) // (EFC1) MC Flash Mode Register -// ========== Register definition for MC peripheral ========== -#define AT91C_MC_ASR (AT91_CAST(AT91_REG *) 0xFFFFFF04) // (MC) MC Abort Status Register -#define AT91C_MC_RCR (AT91_CAST(AT91_REG *) 0xFFFFFF00) // (MC) MC Remap Control Register -#define AT91C_MC_PUP (AT91_CAST(AT91_REG *) 0xFFFFFF50) // (MC) MC Protection Unit Peripherals -#define AT91C_MC_PUIA (AT91_CAST(AT91_REG *) 0xFFFFFF10) // (MC) MC Protection Unit Area -#define AT91C_MC_AASR (AT91_CAST(AT91_REG *) 0xFFFFFF08) // (MC) MC Abort Address Status Register -#define AT91C_MC_PUER (AT91_CAST(AT91_REG *) 0xFFFFFF54) // (MC) MC Protection Unit Enable Register -// ========== Register definition for PDC_SPI peripheral ========== -#define AT91C_SPI_PTCR (AT91_CAST(AT91_REG *) 0xFFFE0120) // (PDC_SPI) PDC Transfer Control Register -#define AT91C_SPI_TPR (AT91_CAST(AT91_REG *) 0xFFFE0108) // (PDC_SPI) Transmit Pointer Register -#define AT91C_SPI_TCR (AT91_CAST(AT91_REG *) 0xFFFE010C) // (PDC_SPI) Transmit Counter Register -#define AT91C_SPI_RCR (AT91_CAST(AT91_REG *) 0xFFFE0104) // (PDC_SPI) Receive Counter Register -#define AT91C_SPI_PTSR (AT91_CAST(AT91_REG *) 0xFFFE0124) // (PDC_SPI) PDC Transfer Status Register -#define AT91C_SPI_RNPR (AT91_CAST(AT91_REG *) 0xFFFE0110) // (PDC_SPI) Receive Next Pointer Register -#define AT91C_SPI_RPR (AT91_CAST(AT91_REG *) 0xFFFE0100) // (PDC_SPI) Receive Pointer Register -#define AT91C_SPI_TNCR (AT91_CAST(AT91_REG *) 0xFFFE011C) // (PDC_SPI) Transmit Next Counter Register -#define AT91C_SPI_RNCR (AT91_CAST(AT91_REG *) 0xFFFE0114) // (PDC_SPI) Receive Next Counter Register -#define AT91C_SPI_TNPR (AT91_CAST(AT91_REG *) 0xFFFE0118) // (PDC_SPI) Transmit Next Pointer Register -// ========== Register definition for SPI peripheral ========== -#define AT91C_SPI_IER (AT91_CAST(AT91_REG *) 0xFFFE0014) // (SPI) Interrupt Enable Register -#define AT91C_SPI_SR (AT91_CAST(AT91_REG *) 0xFFFE0010) // (SPI) Status Register -#define AT91C_SPI_IDR (AT91_CAST(AT91_REG *) 0xFFFE0018) // (SPI) Interrupt Disable Register -#define AT91C_SPI_CR (AT91_CAST(AT91_REG *) 0xFFFE0000) // (SPI) Control Register -#define AT91C_SPI_MR (AT91_CAST(AT91_REG *) 0xFFFE0004) // (SPI) Mode Register -#define AT91C_SPI_IMR (AT91_CAST(AT91_REG *) 0xFFFE001C) // (SPI) Interrupt Mask Register -#define AT91C_SPI_TDR (AT91_CAST(AT91_REG *) 0xFFFE000C) // (SPI) Transmit Data Register -#define AT91C_SPI_RDR (AT91_CAST(AT91_REG *) 0xFFFE0008) // (SPI) Receive Data Register -#define AT91C_SPI_CSR (AT91_CAST(AT91_REG *) 0xFFFE0030) // (SPI) Chip Select Register -// ========== Register definition for PDC_ADC peripheral ========== -#define AT91C_ADC_PTSR (AT91_CAST(AT91_REG *) 0xFFFD8124) // (PDC_ADC) PDC Transfer Status Register -#define AT91C_ADC_PTCR (AT91_CAST(AT91_REG *) 0xFFFD8120) // (PDC_ADC) PDC Transfer Control Register -#define AT91C_ADC_TNPR (AT91_CAST(AT91_REG *) 0xFFFD8118) // (PDC_ADC) Transmit Next Pointer Register -#define AT91C_ADC_TNCR (AT91_CAST(AT91_REG *) 0xFFFD811C) // (PDC_ADC) Transmit Next Counter Register -#define AT91C_ADC_RNPR (AT91_CAST(AT91_REG *) 0xFFFD8110) // (PDC_ADC) Receive Next Pointer Register -#define AT91C_ADC_RNCR (AT91_CAST(AT91_REG *) 0xFFFD8114) // (PDC_ADC) Receive Next Counter Register -#define AT91C_ADC_RPR (AT91_CAST(AT91_REG *) 0xFFFD8100) // (PDC_ADC) Receive Pointer Register -#define AT91C_ADC_TCR (AT91_CAST(AT91_REG *) 0xFFFD810C) // (PDC_ADC) Transmit Counter Register -#define AT91C_ADC_TPR (AT91_CAST(AT91_REG *) 0xFFFD8108) // (PDC_ADC) Transmit Pointer Register -#define AT91C_ADC_RCR (AT91_CAST(AT91_REG *) 0xFFFD8104) // (PDC_ADC) Receive Counter Register -// ========== Register definition for ADC peripheral ========== -#define AT91C_ADC_CDR2 (AT91_CAST(AT91_REG *) 0xFFFD8038) // (ADC) ADC Channel Data Register 2 -#define AT91C_ADC_CDR3 (AT91_CAST(AT91_REG *) 0xFFFD803C) // (ADC) ADC Channel Data Register 3 -#define AT91C_ADC_CDR0 (AT91_CAST(AT91_REG *) 0xFFFD8030) // (ADC) ADC Channel Data Register 0 -#define AT91C_ADC_CDR5 (AT91_CAST(AT91_REG *) 0xFFFD8044) // (ADC) ADC Channel Data Register 5 -#define AT91C_ADC_CHDR (AT91_CAST(AT91_REG *) 0xFFFD8014) // (ADC) ADC Channel Disable Register -#define AT91C_ADC_SR (AT91_CAST(AT91_REG *) 0xFFFD801C) // (ADC) ADC Status Register -#define AT91C_ADC_CDR4 (AT91_CAST(AT91_REG *) 0xFFFD8040) // (ADC) ADC Channel Data Register 4 -#define AT91C_ADC_CDR1 (AT91_CAST(AT91_REG *) 0xFFFD8034) // (ADC) ADC Channel Data Register 1 -#define AT91C_ADC_LCDR (AT91_CAST(AT91_REG *) 0xFFFD8020) // (ADC) ADC Last Converted Data Register -#define AT91C_ADC_IDR (AT91_CAST(AT91_REG *) 0xFFFD8028) // (ADC) ADC Interrupt Disable Register -#define AT91C_ADC_CR (AT91_CAST(AT91_REG *) 0xFFFD8000) // (ADC) ADC Control Register -#define AT91C_ADC_CDR7 (AT91_CAST(AT91_REG *) 0xFFFD804C) // (ADC) ADC Channel Data Register 7 -#define AT91C_ADC_CDR6 (AT91_CAST(AT91_REG *) 0xFFFD8048) // (ADC) ADC Channel Data Register 6 -#define AT91C_ADC_IER (AT91_CAST(AT91_REG *) 0xFFFD8024) // (ADC) ADC Interrupt Enable Register -#define AT91C_ADC_CHER (AT91_CAST(AT91_REG *) 0xFFFD8010) // (ADC) ADC Channel Enable Register -#define AT91C_ADC_CHSR (AT91_CAST(AT91_REG *) 0xFFFD8018) // (ADC) ADC Channel Status Register -#define AT91C_ADC_MR (AT91_CAST(AT91_REG *) 0xFFFD8004) // (ADC) ADC Mode Register -#define AT91C_ADC_IMR (AT91_CAST(AT91_REG *) 0xFFFD802C) // (ADC) ADC Interrupt Mask Register -// ========== Register definition for PDC_SSC peripheral ========== -#define AT91C_SSC_TNCR (AT91_CAST(AT91_REG *) 0xFFFD411C) // (PDC_SSC) Transmit Next Counter Register -#define AT91C_SSC_RPR (AT91_CAST(AT91_REG *) 0xFFFD4100) // (PDC_SSC) Receive Pointer Register -#define AT91C_SSC_RNCR (AT91_CAST(AT91_REG *) 0xFFFD4114) // (PDC_SSC) Receive Next Counter Register -#define AT91C_SSC_TPR (AT91_CAST(AT91_REG *) 0xFFFD4108) // (PDC_SSC) Transmit Pointer Register -#define AT91C_SSC_PTCR (AT91_CAST(AT91_REG *) 0xFFFD4120) // (PDC_SSC) PDC Transfer Control Register -#define AT91C_SSC_TCR (AT91_CAST(AT91_REG *) 0xFFFD410C) // (PDC_SSC) Transmit Counter Register -#define AT91C_SSC_RCR (AT91_CAST(AT91_REG *) 0xFFFD4104) // (PDC_SSC) Receive Counter Register -#define AT91C_SSC_RNPR (AT91_CAST(AT91_REG *) 0xFFFD4110) // (PDC_SSC) Receive Next Pointer Register -#define AT91C_SSC_TNPR (AT91_CAST(AT91_REG *) 0xFFFD4118) // (PDC_SSC) Transmit Next Pointer Register -#define AT91C_SSC_PTSR (AT91_CAST(AT91_REG *) 0xFFFD4124) // (PDC_SSC) PDC Transfer Status Register -// ========== Register definition for SSC peripheral ========== -#define AT91C_SSC_RHR (AT91_CAST(AT91_REG *) 0xFFFD4020) // (SSC) Receive Holding Register -#define AT91C_SSC_RSHR (AT91_CAST(AT91_REG *) 0xFFFD4030) // (SSC) Receive Sync Holding Register -#define AT91C_SSC_TFMR (AT91_CAST(AT91_REG *) 0xFFFD401C) // (SSC) Transmit Frame Mode Register -#define AT91C_SSC_IDR (AT91_CAST(AT91_REG *) 0xFFFD4048) // (SSC) Interrupt Disable Register -#define AT91C_SSC_THR (AT91_CAST(AT91_REG *) 0xFFFD4024) // (SSC) Transmit Holding Register -#define AT91C_SSC_RCMR (AT91_CAST(AT91_REG *) 0xFFFD4010) // (SSC) Receive Clock ModeRegister -#define AT91C_SSC_IER (AT91_CAST(AT91_REG *) 0xFFFD4044) // (SSC) Interrupt Enable Register -#define AT91C_SSC_TSHR (AT91_CAST(AT91_REG *) 0xFFFD4034) // (SSC) Transmit Sync Holding Register -#define AT91C_SSC_SR (AT91_CAST(AT91_REG *) 0xFFFD4040) // (SSC) Status Register -#define AT91C_SSC_CMR (AT91_CAST(AT91_REG *) 0xFFFD4004) // (SSC) Clock Mode Register -#define AT91C_SSC_TCMR (AT91_CAST(AT91_REG *) 0xFFFD4018) // (SSC) Transmit Clock Mode Register -#define AT91C_SSC_CR (AT91_CAST(AT91_REG *) 0xFFFD4000) // (SSC) Control Register -#define AT91C_SSC_IMR (AT91_CAST(AT91_REG *) 0xFFFD404C) // (SSC) Interrupt Mask Register -#define AT91C_SSC_RFMR (AT91_CAST(AT91_REG *) 0xFFFD4014) // (SSC) Receive Frame Mode Register -// ========== Register definition for PDC_US1 peripheral ========== -#define AT91C_US1_RNCR (AT91_CAST(AT91_REG *) 0xFFFC4114) // (PDC_US1) Receive Next Counter Register -#define AT91C_US1_PTCR (AT91_CAST(AT91_REG *) 0xFFFC4120) // (PDC_US1) PDC Transfer Control Register -#define AT91C_US1_TCR (AT91_CAST(AT91_REG *) 0xFFFC410C) // (PDC_US1) Transmit Counter Register -#define AT91C_US1_PTSR (AT91_CAST(AT91_REG *) 0xFFFC4124) // (PDC_US1) PDC Transfer Status Register -#define AT91C_US1_TNPR (AT91_CAST(AT91_REG *) 0xFFFC4118) // (PDC_US1) Transmit Next Pointer Register -#define AT91C_US1_RCR (AT91_CAST(AT91_REG *) 0xFFFC4104) // (PDC_US1) Receive Counter Register -#define AT91C_US1_RNPR (AT91_CAST(AT91_REG *) 0xFFFC4110) // (PDC_US1) Receive Next Pointer Register -#define AT91C_US1_RPR (AT91_CAST(AT91_REG *) 0xFFFC4100) // (PDC_US1) Receive Pointer Register -#define AT91C_US1_TNCR (AT91_CAST(AT91_REG *) 0xFFFC411C) // (PDC_US1) Transmit Next Counter Register -#define AT91C_US1_TPR (AT91_CAST(AT91_REG *) 0xFFFC4108) // (PDC_US1) Transmit Pointer Register -// ========== Register definition for US1 peripheral ========== -#define AT91C_US1_IF (AT91_CAST(AT91_REG *) 0xFFFC404C) // (US1) IRDA_FILTER Register -#define AT91C_US1_NER (AT91_CAST(AT91_REG *) 0xFFFC4044) // (US1) Nb Errors Register -#define AT91C_US1_RTOR (AT91_CAST(AT91_REG *) 0xFFFC4024) // (US1) Receiver Time-out Register -#define AT91C_US1_CSR (AT91_CAST(AT91_REG *) 0xFFFC4014) // (US1) Channel Status Register -#define AT91C_US1_IDR (AT91_CAST(AT91_REG *) 0xFFFC400C) // (US1) Interrupt Disable Register -#define AT91C_US1_IER (AT91_CAST(AT91_REG *) 0xFFFC4008) // (US1) Interrupt Enable Register -#define AT91C_US1_THR (AT91_CAST(AT91_REG *) 0xFFFC401C) // (US1) Transmitter Holding Register -#define AT91C_US1_TTGR (AT91_CAST(AT91_REG *) 0xFFFC4028) // (US1) Transmitter Time-guard Register -#define AT91C_US1_RHR (AT91_CAST(AT91_REG *) 0xFFFC4018) // (US1) Receiver Holding Register -#define AT91C_US1_BRGR (AT91_CAST(AT91_REG *) 0xFFFC4020) // (US1) Baud Rate Generator Register -#define AT91C_US1_IMR (AT91_CAST(AT91_REG *) 0xFFFC4010) // (US1) Interrupt Mask Register -#define AT91C_US1_FIDI (AT91_CAST(AT91_REG *) 0xFFFC4040) // (US1) FI_DI_Ratio Register -#define AT91C_US1_CR (AT91_CAST(AT91_REG *) 0xFFFC4000) // (US1) Control Register -#define AT91C_US1_MR (AT91_CAST(AT91_REG *) 0xFFFC4004) // (US1) Mode Register -// ========== Register definition for PDC_US0 peripheral ========== -#define AT91C_US0_TNPR (AT91_CAST(AT91_REG *) 0xFFFC0118) // (PDC_US0) Transmit Next Pointer Register -#define AT91C_US0_RNPR (AT91_CAST(AT91_REG *) 0xFFFC0110) // (PDC_US0) Receive Next Pointer Register -#define AT91C_US0_TCR (AT91_CAST(AT91_REG *) 0xFFFC010C) // (PDC_US0) Transmit Counter Register -#define AT91C_US0_PTCR (AT91_CAST(AT91_REG *) 0xFFFC0120) // (PDC_US0) PDC Transfer Control Register -#define AT91C_US0_PTSR (AT91_CAST(AT91_REG *) 0xFFFC0124) // (PDC_US0) PDC Transfer Status Register -#define AT91C_US0_TNCR (AT91_CAST(AT91_REG *) 0xFFFC011C) // (PDC_US0) Transmit Next Counter Register -#define AT91C_US0_TPR (AT91_CAST(AT91_REG *) 0xFFFC0108) // (PDC_US0) Transmit Pointer Register -#define AT91C_US0_RCR (AT91_CAST(AT91_REG *) 0xFFFC0104) // (PDC_US0) Receive Counter Register -#define AT91C_US0_RPR (AT91_CAST(AT91_REG *) 0xFFFC0100) // (PDC_US0) Receive Pointer Register -#define AT91C_US0_RNCR (AT91_CAST(AT91_REG *) 0xFFFC0114) // (PDC_US0) Receive Next Counter Register -// ========== Register definition for US0 peripheral ========== -#define AT91C_US0_BRGR (AT91_CAST(AT91_REG *) 0xFFFC0020) // (US0) Baud Rate Generator Register -#define AT91C_US0_NER (AT91_CAST(AT91_REG *) 0xFFFC0044) // (US0) Nb Errors Register -#define AT91C_US0_CR (AT91_CAST(AT91_REG *) 0xFFFC0000) // (US0) Control Register -#define AT91C_US0_IMR (AT91_CAST(AT91_REG *) 0xFFFC0010) // (US0) Interrupt Mask Register -#define AT91C_US0_FIDI (AT91_CAST(AT91_REG *) 0xFFFC0040) // (US0) FI_DI_Ratio Register -#define AT91C_US0_TTGR (AT91_CAST(AT91_REG *) 0xFFFC0028) // (US0) Transmitter Time-guard Register -#define AT91C_US0_MR (AT91_CAST(AT91_REG *) 0xFFFC0004) // (US0) Mode Register -#define AT91C_US0_RTOR (AT91_CAST(AT91_REG *) 0xFFFC0024) // (US0) Receiver Time-out Register -#define AT91C_US0_CSR (AT91_CAST(AT91_REG *) 0xFFFC0014) // (US0) Channel Status Register -#define AT91C_US0_RHR (AT91_CAST(AT91_REG *) 0xFFFC0018) // (US0) Receiver Holding Register -#define AT91C_US0_IDR (AT91_CAST(AT91_REG *) 0xFFFC000C) // (US0) Interrupt Disable Register -#define AT91C_US0_THR (AT91_CAST(AT91_REG *) 0xFFFC001C) // (US0) Transmitter Holding Register -#define AT91C_US0_IF (AT91_CAST(AT91_REG *) 0xFFFC004C) // (US0) IRDA_FILTER Register -#define AT91C_US0_IER (AT91_CAST(AT91_REG *) 0xFFFC0008) // (US0) Interrupt Enable Register -// ========== Register definition for TWI peripheral ========== -#define AT91C_TWI_IER (AT91_CAST(AT91_REG *) 0xFFFB8024) // (TWI) Interrupt Enable Register -#define AT91C_TWI_CR (AT91_CAST(AT91_REG *) 0xFFFB8000) // (TWI) Control Register -#define AT91C_TWI_SR (AT91_CAST(AT91_REG *) 0xFFFB8020) // (TWI) Status Register -#define AT91C_TWI_IMR (AT91_CAST(AT91_REG *) 0xFFFB802C) // (TWI) Interrupt Mask Register -#define AT91C_TWI_THR (AT91_CAST(AT91_REG *) 0xFFFB8034) // (TWI) Transmit Holding Register -#define AT91C_TWI_IDR (AT91_CAST(AT91_REG *) 0xFFFB8028) // (TWI) Interrupt Disable Register -#define AT91C_TWI_IADR (AT91_CAST(AT91_REG *) 0xFFFB800C) // (TWI) Internal Address Register -#define AT91C_TWI_MMR (AT91_CAST(AT91_REG *) 0xFFFB8004) // (TWI) Master Mode Register -#define AT91C_TWI_CWGR (AT91_CAST(AT91_REG *) 0xFFFB8010) // (TWI) Clock Waveform Generator Register -#define AT91C_TWI_RHR (AT91_CAST(AT91_REG *) 0xFFFB8030) // (TWI) Receive Holding Register -// ========== Register definition for TC0 peripheral ========== -#define AT91C_TC0_SR (AT91_CAST(AT91_REG *) 0xFFFA0020) // (TC0) Status Register -#define AT91C_TC0_RC (AT91_CAST(AT91_REG *) 0xFFFA001C) // (TC0) Register C -#define AT91C_TC0_RB (AT91_CAST(AT91_REG *) 0xFFFA0018) // (TC0) Register B -#define AT91C_TC0_CCR (AT91_CAST(AT91_REG *) 0xFFFA0000) // (TC0) Channel Control Register -#define AT91C_TC0_CMR (AT91_CAST(AT91_REG *) 0xFFFA0004) // (TC0) Channel Mode Register (Capture Mode / Waveform Mode) -#define AT91C_TC0_IER (AT91_CAST(AT91_REG *) 0xFFFA0024) // (TC0) Interrupt Enable Register -#define AT91C_TC0_RA (AT91_CAST(AT91_REG *) 0xFFFA0014) // (TC0) Register A -#define AT91C_TC0_IDR (AT91_CAST(AT91_REG *) 0xFFFA0028) // (TC0) Interrupt Disable Register -#define AT91C_TC0_CV (AT91_CAST(AT91_REG *) 0xFFFA0010) // (TC0) Counter Value -#define AT91C_TC0_IMR (AT91_CAST(AT91_REG *) 0xFFFA002C) // (TC0) Interrupt Mask Register -// ========== Register definition for TC1 peripheral ========== -#define AT91C_TC1_RB (AT91_CAST(AT91_REG *) 0xFFFA0058) // (TC1) Register B -#define AT91C_TC1_CCR (AT91_CAST(AT91_REG *) 0xFFFA0040) // (TC1) Channel Control Register -#define AT91C_TC1_IER (AT91_CAST(AT91_REG *) 0xFFFA0064) // (TC1) Interrupt Enable Register -#define AT91C_TC1_IDR (AT91_CAST(AT91_REG *) 0xFFFA0068) // (TC1) Interrupt Disable Register -#define AT91C_TC1_SR (AT91_CAST(AT91_REG *) 0xFFFA0060) // (TC1) Status Register -#define AT91C_TC1_CMR (AT91_CAST(AT91_REG *) 0xFFFA0044) // (TC1) Channel Mode Register (Capture Mode / Waveform Mode) -#define AT91C_TC1_RA (AT91_CAST(AT91_REG *) 0xFFFA0054) // (TC1) Register A -#define AT91C_TC1_RC (AT91_CAST(AT91_REG *) 0xFFFA005C) // (TC1) Register C -#define AT91C_TC1_IMR (AT91_CAST(AT91_REG *) 0xFFFA006C) // (TC1) Interrupt Mask Register -#define AT91C_TC1_CV (AT91_CAST(AT91_REG *) 0xFFFA0050) // (TC1) Counter Value -// ========== Register definition for TC2 peripheral ========== -#define AT91C_TC2_CMR (AT91_CAST(AT91_REG *) 0xFFFA0084) // (TC2) Channel Mode Register (Capture Mode / Waveform Mode) -#define AT91C_TC2_CCR (AT91_CAST(AT91_REG *) 0xFFFA0080) // (TC2) Channel Control Register -#define AT91C_TC2_CV (AT91_CAST(AT91_REG *) 0xFFFA0090) // (TC2) Counter Value -#define AT91C_TC2_RA (AT91_CAST(AT91_REG *) 0xFFFA0094) // (TC2) Register A -#define AT91C_TC2_RB (AT91_CAST(AT91_REG *) 0xFFFA0098) // (TC2) Register B -#define AT91C_TC2_IDR (AT91_CAST(AT91_REG *) 0xFFFA00A8) // (TC2) Interrupt Disable Register -#define AT91C_TC2_IMR (AT91_CAST(AT91_REG *) 0xFFFA00AC) // (TC2) Interrupt Mask Register -#define AT91C_TC2_RC (AT91_CAST(AT91_REG *) 0xFFFA009C) // (TC2) Register C -#define AT91C_TC2_IER (AT91_CAST(AT91_REG *) 0xFFFA00A4) // (TC2) Interrupt Enable Register -#define AT91C_TC2_SR (AT91_CAST(AT91_REG *) 0xFFFA00A0) // (TC2) Status Register -// ========== Register definition for TCB peripheral ========== -#define AT91C_TCB_BMR (AT91_CAST(AT91_REG *) 0xFFFA00C4) // (TCB) TC Block Mode Register -#define AT91C_TCB_BCR (AT91_CAST(AT91_REG *) 0xFFFA00C0) // (TCB) TC Block Control Register -// ========== Register definition for PWMC_CH3 peripheral ========== -#define AT91C_PWMC_CH3_CUPDR (AT91_CAST(AT91_REG *) 0xFFFCC270) // (PWMC_CH3) Channel Update Register -#define AT91C_PWMC_CH3_Reserved (AT91_CAST(AT91_REG *) 0xFFFCC274) // (PWMC_CH3) Reserved -#define AT91C_PWMC_CH3_CPRDR (AT91_CAST(AT91_REG *) 0xFFFCC268) // (PWMC_CH3) Channel Period Register -#define AT91C_PWMC_CH3_CDTYR (AT91_CAST(AT91_REG *) 0xFFFCC264) // (PWMC_CH3) Channel Duty Cycle Register -#define AT91C_PWMC_CH3_CCNTR (AT91_CAST(AT91_REG *) 0xFFFCC26C) // (PWMC_CH3) Channel Counter Register -#define AT91C_PWMC_CH3_CMR (AT91_CAST(AT91_REG *) 0xFFFCC260) // (PWMC_CH3) Channel Mode Register -// ========== Register definition for PWMC_CH2 peripheral ========== -#define AT91C_PWMC_CH2_Reserved (AT91_CAST(AT91_REG *) 0xFFFCC254) // (PWMC_CH2) Reserved -#define AT91C_PWMC_CH2_CMR (AT91_CAST(AT91_REG *) 0xFFFCC240) // (PWMC_CH2) Channel Mode Register -#define AT91C_PWMC_CH2_CCNTR (AT91_CAST(AT91_REG *) 0xFFFCC24C) // (PWMC_CH2) Channel Counter Register -#define AT91C_PWMC_CH2_CPRDR (AT91_CAST(AT91_REG *) 0xFFFCC248) // (PWMC_CH2) Channel Period Register -#define AT91C_PWMC_CH2_CUPDR (AT91_CAST(AT91_REG *) 0xFFFCC250) // (PWMC_CH2) Channel Update Register -#define AT91C_PWMC_CH2_CDTYR (AT91_CAST(AT91_REG *) 0xFFFCC244) // (PWMC_CH2) Channel Duty Cycle Register -// ========== Register definition for PWMC_CH1 peripheral ========== -#define AT91C_PWMC_CH1_Reserved (AT91_CAST(AT91_REG *) 0xFFFCC234) // (PWMC_CH1) Reserved -#define AT91C_PWMC_CH1_CUPDR (AT91_CAST(AT91_REG *) 0xFFFCC230) // (PWMC_CH1) Channel Update Register -#define AT91C_PWMC_CH1_CPRDR (AT91_CAST(AT91_REG *) 0xFFFCC228) // (PWMC_CH1) Channel Period Register -#define AT91C_PWMC_CH1_CCNTR (AT91_CAST(AT91_REG *) 0xFFFCC22C) // (PWMC_CH1) Channel Counter Register -#define AT91C_PWMC_CH1_CDTYR (AT91_CAST(AT91_REG *) 0xFFFCC224) // (PWMC_CH1) Channel Duty Cycle Register -#define AT91C_PWMC_CH1_CMR (AT91_CAST(AT91_REG *) 0xFFFCC220) // (PWMC_CH1) Channel Mode Register -// ========== Register definition for PWMC_CH0 peripheral ========== -#define AT91C_PWMC_CH0_Reserved (AT91_CAST(AT91_REG *) 0xFFFCC214) // (PWMC_CH0) Reserved -#define AT91C_PWMC_CH0_CPRDR (AT91_CAST(AT91_REG *) 0xFFFCC208) // (PWMC_CH0) Channel Period Register -#define AT91C_PWMC_CH0_CDTYR (AT91_CAST(AT91_REG *) 0xFFFCC204) // (PWMC_CH0) Channel Duty Cycle Register -#define AT91C_PWMC_CH0_CMR (AT91_CAST(AT91_REG *) 0xFFFCC200) // (PWMC_CH0) Channel Mode Register -#define AT91C_PWMC_CH0_CUPDR (AT91_CAST(AT91_REG *) 0xFFFCC210) // (PWMC_CH0) Channel Update Register -#define AT91C_PWMC_CH0_CCNTR (AT91_CAST(AT91_REG *) 0xFFFCC20C) // (PWMC_CH0) Channel Counter Register -// ========== Register definition for PWMC peripheral ========== -#define AT91C_PWMC_IDR (AT91_CAST(AT91_REG *) 0xFFFCC014) // (PWMC) PWMC Interrupt Disable Register -#define AT91C_PWMC_DIS (AT91_CAST(AT91_REG *) 0xFFFCC008) // (PWMC) PWMC Disable Register -#define AT91C_PWMC_IER (AT91_CAST(AT91_REG *) 0xFFFCC010) // (PWMC) PWMC Interrupt Enable Register -#define AT91C_PWMC_VR (AT91_CAST(AT91_REG *) 0xFFFCC0FC) // (PWMC) PWMC Version Register -#define AT91C_PWMC_ISR (AT91_CAST(AT91_REG *) 0xFFFCC01C) // (PWMC) PWMC Interrupt Status Register -#define AT91C_PWMC_SR (AT91_CAST(AT91_REG *) 0xFFFCC00C) // (PWMC) PWMC Status Register -#define AT91C_PWMC_IMR (AT91_CAST(AT91_REG *) 0xFFFCC018) // (PWMC) PWMC Interrupt Mask Register -#define AT91C_PWMC_MR (AT91_CAST(AT91_REG *) 0xFFFCC000) // (PWMC) PWMC Mode Register -#define AT91C_PWMC_ENA (AT91_CAST(AT91_REG *) 0xFFFCC004) // (PWMC) PWMC Enable Register -// ========== Register definition for UDP peripheral ========== -#define AT91C_UDP_IMR (AT91_CAST(AT91_REG *) 0xFFFB0018) // (UDP) Interrupt Mask Register -#define AT91C_UDP_FADDR (AT91_CAST(AT91_REG *) 0xFFFB0008) // (UDP) Function Address Register -#define AT91C_UDP_NUM (AT91_CAST(AT91_REG *) 0xFFFB0000) // (UDP) Frame Number Register -#define AT91C_UDP_FDR (AT91_CAST(AT91_REG *) 0xFFFB0050) // (UDP) Endpoint FIFO Data Register -#define AT91C_UDP_ISR (AT91_CAST(AT91_REG *) 0xFFFB001C) // (UDP) Interrupt Status Register -#define AT91C_UDP_CSR (AT91_CAST(AT91_REG *) 0xFFFB0030) // (UDP) Endpoint Control and Status Register -#define AT91C_UDP_IDR (AT91_CAST(AT91_REG *) 0xFFFB0014) // (UDP) Interrupt Disable Register -#define AT91C_UDP_ICR (AT91_CAST(AT91_REG *) 0xFFFB0020) // (UDP) Interrupt Clear Register -#define AT91C_UDP_RSTEP (AT91_CAST(AT91_REG *) 0xFFFB0028) // (UDP) Reset Endpoint Register -#define AT91C_UDP_TXVC (AT91_CAST(AT91_REG *) 0xFFFB0074) // (UDP) Transceiver Control Register -#define AT91C_UDP_GLBSTATE (AT91_CAST(AT91_REG *) 0xFFFB0004) // (UDP) Global State Register -#define AT91C_UDP_IER (AT91_CAST(AT91_REG *) 0xFFFB0010) // (UDP) Interrupt Enable Register - -// ***************************************************************************** -// PIO DEFINITIONS FOR AT91SAM7S512 -// ***************************************************************************** -#define AT91C_PIO_PA0 (1 << 0) // Pin Controlled by PA0 -#define AT91C_PA0_PWM0 (AT91C_PIO_PA0) // PWM Channel 0 -#define AT91C_PA0_TIOA0 (AT91C_PIO_PA0) // Timer Counter 0 Multipurpose Timer I/O Pin A -#define AT91C_PIO_PA1 (1 << 1) // Pin Controlled by PA1 -#define AT91C_PA1_PWM1 (AT91C_PIO_PA1) // PWM Channel 1 -#define AT91C_PA1_TIOB0 (AT91C_PIO_PA1) // Timer Counter 0 Multipurpose Timer I/O Pin B -#define AT91C_PIO_PA2 (1 << 2) // Pin Controlled by PA2 -#define AT91C_PA2_PWM2 (AT91C_PIO_PA2) // PWM Channel 2 -#define AT91C_PA2_SCK0 (AT91C_PIO_PA2) // USART 0 Serial Clock -#define AT91C_PIO_PA3 (1 << 3) // Pin Controlled by PA3 -#define AT91C_PA3_TWD (AT91C_PIO_PA3) // TWI Two-wire Serial Data -#define AT91C_PA3_NPCS3 (AT91C_PIO_PA3) // SPI Peripheral Chip Select 3 -#define AT91C_PIO_PA4 (1 << 4) // Pin Controlled by PA4 -#define AT91C_PA4_TWCK (AT91C_PIO_PA4) // TWI Two-wire Serial Clock -#define AT91C_PA4_TCLK0 (AT91C_PIO_PA4) // Timer Counter 0 external clock input -#define AT91C_PIO_PA5 (1 << 5) // Pin Controlled by PA5 -#define AT91C_PA5_RXD0 (AT91C_PIO_PA5) // USART 0 Receive Data -#define AT91C_PA5_NPCS3 (AT91C_PIO_PA5) // SPI Peripheral Chip Select 3 -#define AT91C_PIO_PA6 (1 << 6) // Pin Controlled by PA6 -#define AT91C_PA6_TXD0 (AT91C_PIO_PA6) // USART 0 Transmit Data -#define AT91C_PA6_PCK0 (AT91C_PIO_PA6) // PMC Programmable Clock Output 0 -#define AT91C_PIO_PA7 (1 << 7) // Pin Controlled by PA7 -#define AT91C_PA7_RTS0 (AT91C_PIO_PA7) // USART 0 Ready To Send -#define AT91C_PA7_PWM3 (AT91C_PIO_PA7) // PWM Channel 3 -#define AT91C_PIO_PA8 (1 << 8) // Pin Controlled by PA8 -#define AT91C_PA8_CTS0 (AT91C_PIO_PA8) // USART 0 Clear To Send -#define AT91C_PA8_ADTRG (AT91C_PIO_PA8) // ADC External Trigger -#define AT91C_PIO_PA9 (1 << 9) // Pin Controlled by PA9 -#define AT91C_PA9_DRXD (AT91C_PIO_PA9) // DBGU Debug Receive Data -#define AT91C_PA9_NPCS1 (AT91C_PIO_PA9) // SPI Peripheral Chip Select 1 -#define AT91C_PIO_PA10 (1 << 10) // Pin Controlled by PA10 -#define AT91C_PA10_DTXD (AT91C_PIO_PA10) // DBGU Debug Transmit Data -#define AT91C_PA10_NPCS2 (AT91C_PIO_PA10) // SPI Peripheral Chip Select 2 -#define AT91C_PIO_PA11 (1 << 11) // Pin Controlled by PA11 -#define AT91C_PA11_NPCS0 (AT91C_PIO_PA11) // SPI Peripheral Chip Select 0 -#define AT91C_PA11_PWM0 (AT91C_PIO_PA11) // PWM Channel 0 -#define AT91C_PIO_PA12 (1 << 12) // Pin Controlled by PA12 -#define AT91C_PA12_MISO (AT91C_PIO_PA12) // SPI Master In Slave -#define AT91C_PA12_PWM1 (AT91C_PIO_PA12) // PWM Channel 1 -#define AT91C_PIO_PA13 (1 << 13) // Pin Controlled by PA13 -#define AT91C_PA13_MOSI (AT91C_PIO_PA13) // SPI Master Out Slave -#define AT91C_PA13_PWM2 (AT91C_PIO_PA13) // PWM Channel 2 -#define AT91C_PIO_PA14 (1 << 14) // Pin Controlled by PA14 -#define AT91C_PA14_SPCK (AT91C_PIO_PA14) // SPI Serial Clock -#define AT91C_PA14_PWM3 (AT91C_PIO_PA14) // PWM Channel 3 -#define AT91C_PIO_PA15 (1 << 15) // Pin Controlled by PA15 -#define AT91C_PA15_TF (AT91C_PIO_PA15) // SSC Transmit Frame Sync -#define AT91C_PA15_TIOA1 (AT91C_PIO_PA15) // Timer Counter 1 Multipurpose Timer I/O Pin A -#define AT91C_PIO_PA16 (1 << 16) // Pin Controlled by PA16 -#define AT91C_PA16_TK (AT91C_PIO_PA16) // SSC Transmit Clock -#define AT91C_PA16_TIOB1 (AT91C_PIO_PA16) // Timer Counter 1 Multipurpose Timer I/O Pin B -#define AT91C_PIO_PA17 (1 << 17) // Pin Controlled by PA17 -#define AT91C_PA17_TD (AT91C_PIO_PA17) // SSC Transmit data -#define AT91C_PA17_PCK1 (AT91C_PIO_PA17) // PMC Programmable Clock Output 1 -#define AT91C_PIO_PA18 (1 << 18) // Pin Controlled by PA18 -#define AT91C_PA18_RD (AT91C_PIO_PA18) // SSC Receive Data -#define AT91C_PA18_PCK2 (AT91C_PIO_PA18) // PMC Programmable Clock Output 2 -#define AT91C_PIO_PA19 (1 << 19) // Pin Controlled by PA19 -#define AT91C_PA19_RK (AT91C_PIO_PA19) // SSC Receive Clock -#define AT91C_PA19_FIQ (AT91C_PIO_PA19) // AIC Fast Interrupt Input -#define AT91C_PIO_PA20 (1 << 20) // Pin Controlled by PA20 -#define AT91C_PA20_RF (AT91C_PIO_PA20) // SSC Receive Frame Sync -#define AT91C_PA20_IRQ0 (AT91C_PIO_PA20) // External Interrupt 0 -#define AT91C_PIO_PA21 (1 << 21) // Pin Controlled by PA21 -#define AT91C_PA21_RXD1 (AT91C_PIO_PA21) // USART 1 Receive Data -#define AT91C_PA21_PCK1 (AT91C_PIO_PA21) // PMC Programmable Clock Output 1 -#define AT91C_PIO_PA22 (1 << 22) // Pin Controlled by PA22 -#define AT91C_PA22_TXD1 (AT91C_PIO_PA22) // USART 1 Transmit Data -#define AT91C_PA22_NPCS3 (AT91C_PIO_PA22) // SPI Peripheral Chip Select 3 -#define AT91C_PIO_PA23 (1 << 23) // Pin Controlled by PA23 -#define AT91C_PA23_SCK1 (AT91C_PIO_PA23) // USART 1 Serial Clock -#define AT91C_PA23_PWM0 (AT91C_PIO_PA23) // PWM Channel 0 -#define AT91C_PIO_PA24 (1 << 24) // Pin Controlled by PA24 -#define AT91C_PA24_RTS1 (AT91C_PIO_PA24) // USART 1 Ready To Send -#define AT91C_PA24_PWM1 (AT91C_PIO_PA24) // PWM Channel 1 -#define AT91C_PIO_PA25 (1 << 25) // Pin Controlled by PA25 -#define AT91C_PA25_CTS1 (AT91C_PIO_PA25) // USART 1 Clear To Send -#define AT91C_PA25_PWM2 (AT91C_PIO_PA25) // PWM Channel 2 -#define AT91C_PIO_PA26 (1 << 26) // Pin Controlled by PA26 -#define AT91C_PA26_DCD1 (AT91C_PIO_PA26) // USART 1 Data Carrier Detect -#define AT91C_PA26_TIOA2 (AT91C_PIO_PA26) // Timer Counter 2 Multipurpose Timer I/O Pin A -#define AT91C_PIO_PA27 (1 << 27) // Pin Controlled by PA27 -#define AT91C_PA27_DTR1 (AT91C_PIO_PA27) // USART 1 Data Terminal ready -#define AT91C_PA27_TIOB2 (AT91C_PIO_PA27) // Timer Counter 2 Multipurpose Timer I/O Pin B -#define AT91C_PIO_PA28 (1 << 28) // Pin Controlled by PA28 -#define AT91C_PA28_DSR1 (AT91C_PIO_PA28) // USART 1 Data Set ready -#define AT91C_PA28_TCLK1 (AT91C_PIO_PA28) // Timer Counter 1 external clock input -#define AT91C_PIO_PA29 (1 << 29) // Pin Controlled by PA29 -#define AT91C_PA29_RI1 (AT91C_PIO_PA29) // USART 1 Ring Indicator -#define AT91C_PA29_TCLK2 (AT91C_PIO_PA29) // Timer Counter 2 external clock input -#define AT91C_PIO_PA30 (1 << 30) // Pin Controlled by PA30 -#define AT91C_PA30_IRQ1 (AT91C_PIO_PA30) // External Interrupt 1 -#define AT91C_PA30_NPCS2 (AT91C_PIO_PA30) // SPI Peripheral Chip Select 2 -#define AT91C_PIO_PA31 (1 << 31) // Pin Controlled by PA31 -#define AT91C_PA31_NPCS1 (AT91C_PIO_PA31) // SPI Peripheral Chip Select 1 -#define AT91C_PA31_PCK2 (AT91C_PIO_PA31) // PMC Programmable Clock Output 2 - -// ***************************************************************************** -// PERIPHERAL ID DEFINITIONS FOR AT91SAM7S512 -// ***************************************************************************** -#define AT91C_ID_FIQ ( 0) // Advanced Interrupt Controller (FIQ) -#define AT91C_ID_SYS ( 1) // System Peripheral -#define AT91C_ID_PIOA ( 2) // Parallel IO Controller -#define AT91C_ID_3_Reserved ( 3) // Reserved -#define AT91C_ID_ADC ( 4) // Analog-to-Digital Converter -#define AT91C_ID_SPI ( 5) // Serial Peripheral Interface -#define AT91C_ID_US0 ( 6) // USART 0 -#define AT91C_ID_US1 ( 7) // USART 1 -#define AT91C_ID_SSC ( 8) // Serial Synchronous Controller -#define AT91C_ID_TWI ( 9) // Two-Wire Interface -#define AT91C_ID_PWMC (10) // PWM Controller -#define AT91C_ID_UDP (11) // USB Device Port -#define AT91C_ID_TC0 (12) // Timer Counter 0 -#define AT91C_ID_TC1 (13) // Timer Counter 1 -#define AT91C_ID_TC2 (14) // Timer Counter 2 -#define AT91C_ID_15_Reserved (15) // Reserved -#define AT91C_ID_16_Reserved (16) // Reserved -#define AT91C_ID_17_Reserved (17) // Reserved -#define AT91C_ID_18_Reserved (18) // Reserved -#define AT91C_ID_19_Reserved (19) // Reserved -#define AT91C_ID_20_Reserved (20) // Reserved -#define AT91C_ID_21_Reserved (21) // Reserved -#define AT91C_ID_22_Reserved (22) // Reserved -#define AT91C_ID_23_Reserved (23) // Reserved -#define AT91C_ID_24_Reserved (24) // Reserved -#define AT91C_ID_25_Reserved (25) // Reserved -#define AT91C_ID_26_Reserved (26) // Reserved -#define AT91C_ID_27_Reserved (27) // Reserved -#define AT91C_ID_28_Reserved (28) // Reserved -#define AT91C_ID_29_Reserved (29) // Reserved -#define AT91C_ID_IRQ0 (30) // Advanced Interrupt Controller (IRQ0) -#define AT91C_ID_IRQ1 (31) // Advanced Interrupt Controller (IRQ1) -#define AT91C_ALL_INT (0xC0007FF7) // ALL VALID INTERRUPTS - -// ***************************************************************************** -// BASE ADDRESS DEFINITIONS FOR AT91SAM7S512 -// ***************************************************************************** -#define AT91C_BASE_SYS (AT91_CAST(AT91PS_SYS) 0xFFFFF000) // (SYS) Base Address -#define AT91C_BASE_AIC (AT91_CAST(AT91PS_AIC) 0xFFFFF000) // (AIC) Base Address -#define AT91C_BASE_PDC_DBGU (AT91_CAST(AT91PS_PDC) 0xFFFFF300) // (PDC_DBGU) Base Address -#define AT91C_BASE_DBGU (AT91_CAST(AT91PS_DBGU) 0xFFFFF200) // (DBGU) Base Address -#define AT91C_BASE_PIOA (AT91_CAST(AT91PS_PIO) 0xFFFFF400) // (PIOA) Base Address -#define AT91C_BASE_CKGR (AT91_CAST(AT91PS_CKGR) 0xFFFFFC20) // (CKGR) Base Address -#define AT91C_BASE_PMC (AT91_CAST(AT91PS_PMC) 0xFFFFFC00) // (PMC) Base Address -#define AT91C_BASE_RSTC (AT91_CAST(AT91PS_RSTC) 0xFFFFFD00) // (RSTC) Base Address -#define AT91C_BASE_RTTC (AT91_CAST(AT91PS_RTTC) 0xFFFFFD20) // (RTTC) Base Address -#define AT91C_BASE_PITC (AT91_CAST(AT91PS_PITC) 0xFFFFFD30) // (PITC) Base Address -#define AT91C_BASE_WDTC (AT91_CAST(AT91PS_WDTC) 0xFFFFFD40) // (WDTC) Base Address -#define AT91C_BASE_VREG (AT91_CAST(AT91PS_VREG) 0xFFFFFD60) // (VREG) Base Address -#define AT91C_BASE_EFC0 (AT91_CAST(AT91PS_EFC) 0xFFFFFF60) // (EFC0) Base Address -#define AT91C_BASE_EFC1 (AT91_CAST(AT91PS_EFC) 0xFFFFFF70) // (EFC1) Base Address -#define AT91C_BASE_MC (AT91_CAST(AT91PS_MC) 0xFFFFFF00) // (MC) Base Address -#define AT91C_BASE_PDC_SPI (AT91_CAST(AT91PS_PDC) 0xFFFE0100) // (PDC_SPI) Base Address -#define AT91C_BASE_SPI (AT91_CAST(AT91PS_SPI) 0xFFFE0000) // (SPI) Base Address -#define AT91C_BASE_PDC_ADC (AT91_CAST(AT91PS_PDC) 0xFFFD8100) // (PDC_ADC) Base Address -#define AT91C_BASE_ADC (AT91_CAST(AT91PS_ADC) 0xFFFD8000) // (ADC) Base Address -#define AT91C_BASE_PDC_SSC (AT91_CAST(AT91PS_PDC) 0xFFFD4100) // (PDC_SSC) Base Address -#define AT91C_BASE_SSC (AT91_CAST(AT91PS_SSC) 0xFFFD4000) // (SSC) Base Address -#define AT91C_BASE_PDC_US1 (AT91_CAST(AT91PS_PDC) 0xFFFC4100) // (PDC_US1) Base Address -#define AT91C_BASE_US1 (AT91_CAST(AT91PS_USART) 0xFFFC4000) // (US1) Base Address -#define AT91C_BASE_PDC_US0 (AT91_CAST(AT91PS_PDC) 0xFFFC0100) // (PDC_US0) Base Address -#define AT91C_BASE_US0 (AT91_CAST(AT91PS_USART) 0xFFFC0000) // (US0) Base Address -#define AT91C_BASE_TWI (AT91_CAST(AT91PS_TWI) 0xFFFB8000) // (TWI) Base Address -#define AT91C_BASE_TC0 (AT91_CAST(AT91PS_TC) 0xFFFA0000) // (TC0) Base Address -#define AT91C_BASE_TC1 (AT91_CAST(AT91PS_TC) 0xFFFA0040) // (TC1) Base Address -#define AT91C_BASE_TC2 (AT91_CAST(AT91PS_TC) 0xFFFA0080) // (TC2) Base Address -#define AT91C_BASE_TCB (AT91_CAST(AT91PS_TCB) 0xFFFA0000) // (TCB) Base Address -#define AT91C_BASE_PWMC_CH3 (AT91_CAST(AT91PS_PWMC_CH) 0xFFFCC260) // (PWMC_CH3) Base Address -#define AT91C_BASE_PWMC_CH2 (AT91_CAST(AT91PS_PWMC_CH) 0xFFFCC240) // (PWMC_CH2) Base Address -#define AT91C_BASE_PWMC_CH1 (AT91_CAST(AT91PS_PWMC_CH) 0xFFFCC220) // (PWMC_CH1) Base Address -#define AT91C_BASE_PWMC_CH0 (AT91_CAST(AT91PS_PWMC_CH) 0xFFFCC200) // (PWMC_CH0) Base Address -#define AT91C_BASE_PWMC (AT91_CAST(AT91PS_PWMC) 0xFFFCC000) // (PWMC) Base Address -#define AT91C_BASE_UDP (AT91_CAST(AT91PS_UDP) 0xFFFB0000) // (UDP) Base Address - -// ***************************************************************************** -// MEMORY MAPPING DEFINITIONS FOR AT91SAM7S512 -// ***************************************************************************** -// ISRAM -#define AT91C_ISRAM (0x00200000) // Internal SRAM base address -#define AT91C_ISRAM_SIZE (0x00010000) // Internal SRAM size in byte (64 Kbytes) -// IFLASH -#define AT91C_IFLASH (0x00100000) // Internal FLASH base address -#define AT91C_IFLASH_SIZE (0x00080000) // Internal FLASH size in byte (512 Kbytes) -#define AT91C_IFLASH_PAGE_SIZE (256) // Internal FLASH Page Size: 256 bytes -#define AT91C_IFLASH_LOCK_REGION_SIZE (16384) // Internal FLASH Lock Region Size: 16 Kbytes -#define AT91C_IFLASH_NB_OF_PAGES (2048) // Internal FLASH Number of Pages: 2048 bytes -#define AT91C_IFLASH_NB_OF_LOCK_BITS (32) // Internal FLASH Number of Lock Bits: 32 bytes - -#endif diff --git a/mfkey_32_64/src/main/cpp/bucketsort.c b/mfkey_32_64/src/main/cpp/bucketsort.c deleted file mode 100644 index 162869e3..00000000 --- a/mfkey_32_64/src/main/cpp/bucketsort.c +++ /dev/null @@ -1,47 +0,0 @@ -#include "bucketsort.h" - -extern void bucket_sort_intersect(uint32_t* const estart, uint32_t* const estop, - uint32_t* const ostart, uint32_t* const ostop, - bucket_info_t *bucket_info, bucket_array_t bucket) -{ - uint32_t *p1, *p2; - uint32_t *start[2]; - uint32_t *stop[2]; - - start[0] = estart; - stop[0] = estop; - start[1] = ostart; - stop[1] = ostop; - - // init buckets to be empty - for (uint32_t i = 0; i < 2; i++) { - for (uint32_t j = 0x00; j <= 0xff; j++) { - bucket[i][j].bp = bucket[i][j].head; - } - } - - // sort the lists into the buckets based on the MSB (contribution bits) - for (uint32_t i = 0; i < 2; i++) { - for (p1 = start[i]; p1 <= stop[i]; p1++) { - uint32_t bucket_index = (*p1 & 0xff000000) >> 24; - *(bucket[i][bucket_index].bp++) = *p1; - } - } - - // write back intersecting buckets as sorted list. - // fill in bucket_info with head and tail of the bucket contents in the list and number of non-empty buckets. - uint32_t nonempty_bucket; - for (uint32_t i = 0; i < 2; i++) { - p1 = start[i]; - nonempty_bucket = 0; - for (uint32_t j = 0x00; j <= 0xff; j++) { - if (bucket[0][j].bp != bucket[0][j].head && bucket[1][j].bp != bucket[1][j].head) { // non-empty intersecting buckets only - bucket_info->bucket_info[i][nonempty_bucket].head = p1; - for (p2 = bucket[i][j].head; p2 < bucket[i][j].bp; *p1++ = *p2++); - bucket_info->bucket_info[i][nonempty_bucket].tail = p1 - 1; - nonempty_bucket++; - } - } - bucket_info->numbuckets = nonempty_bucket; - } -} diff --git a/mfkey_32_64/src/main/cpp/bucketsort.h b/mfkey_32_64/src/main/cpp/bucketsort.h deleted file mode 100644 index be504508..00000000 --- a/mfkey_32_64/src/main/cpp/bucketsort.h +++ /dev/null @@ -1,24 +0,0 @@ -#ifndef BUCKETSORT_H__ -#define BUCKETSORT_H__ - -#include -#include - -typedef struct bucket { - uint32_t *head; - uint32_t *bp; -} bucket_t; - -typedef bucket_t bucket_array_t[2][0x100]; - -typedef struct bucket_info { - struct { - uint32_t *head, *tail; - } bucket_info[2][0x100]; - uint32_t numbuckets; -} bucket_info_t; - -void bucket_sort_intersect(uint32_t* const estart, uint32_t* const estop, - uint32_t* const ostart, uint32_t* const ostop, - bucket_info_t *bucket_info, bucket_array_t bucket); -#endif \ No newline at end of file diff --git a/mfkey_32_64/src/main/cpp/common.h b/mfkey_32_64/src/main/cpp/common.h deleted file mode 100644 index 998db64d..00000000 --- a/mfkey_32_64/src/main/cpp/common.h +++ /dev/null @@ -1,34 +0,0 @@ -//----------------------------------------------------------------------------- -// Hagen Fritsch - June 2010 -// -// This code is licensed to you under the terms of the GNU GPL, version 2 or, -// at your option, any later version. See the LICENSE.txt file for the text of -// the license. - -//----------------------------------------------------------------------------- -// Interlib Definitions -//----------------------------------------------------------------------------- - -#ifndef __COMMON_H -#define __COMMON_H - -#include -#include -#include -#include -typedef unsigned char byte_t; - -#ifndef MIN -# define MIN(a, b) (((a) < (b)) ? (a) : (b)) -#endif -#ifndef MAX -# define MAX(a, b) (((a) > (b)) ? (a) : (b)) -#endif -#ifndef ABS -# define ABS(a) ( ((a)<0) ? -(a) : (a) ) -#endif - - -#define RAMFUNC __attribute((long_call, section(".ramfunc"))) - -#endif diff --git a/mfkey_32_64/src/main/cpp/crapto1.c b/mfkey_32_64/src/main/cpp/crapto1.c deleted file mode 100644 index 282ea9db..00000000 --- a/mfkey_32_64/src/main/cpp/crapto1.c +++ /dev/null @@ -1,541 +0,0 @@ -/* crapto1.c - - This program is free software; you can redistribute it and/or - modify it under the terms of the GNU General Public License - as published by the Free Software Foundation; either version 2 - of the License, or (at your option) any later version. - - This program is distributed in the hope that it will be useful, - but WITHOUT ANY WARRANTY; without even the implied warranty of - MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - GNU General Public License for more details. - - You should have received a copy of the GNU General Public License - along with this program; if not, write to the Free Software - Foundation, Inc., 51 Franklin Street, Fifth Floor, - Boston, MA 02110-1301, US$ - - Copyright (C) 2008-2014 bla -*/ -#include "crapto1.h" - -#include -#include "parity.h" -#include "bucketsort.h" - -#if !defined LOWMEM && defined __GNUC__ -static uint8_t filterlut[1 << 20]; -static void __attribute__((constructor)) fill_lut() -{ - uint32_t i; - for(i = 0; i < 1 << 20; ++i) - filterlut[i] = filter(i); -} -#define filter(x) (filterlut[(x) & 0xfffff]) -#endif - -/** binsearch - * Binary search for the first occurence of *stop's MSB in sorted [start,stop] - */ -/* static inline uint32_t* binsearch(uint32_t *start, uint32_t *stop) -{ - uint32_t mid, val = *stop & 0xff000000; - while(start != stop) - if(start[mid = (stop - start) >> 1] > val) - stop = &start[mid]; - else - start += mid + 1; - - return start; -} - */ -/** update_contribution - * helper, calculates the partial linear feedback contributions and puts in MSB - */ -static inline void update_contribution(uint32_t *item, const uint32_t mask1, const uint32_t mask2) -{ - uint32_t p = *item >> 25; - - p = p << 1 | evenparity32(*item & mask1); - p = p << 1 | evenparity32(*item & mask2); - *item = p << 24 | (*item & 0xffffff); -} - -/** extend_table - * using a bit of the keystream extend the table of possible lfsr states - */ -static inline void extend_table(uint32_t *tbl, uint32_t **end, int bit, int m1, int m2, uint32_t in) -{ - in <<= 24; - for(*tbl <<= 1; tbl <= *end; *++tbl <<= 1) - if(filter(*tbl) ^ filter(*tbl | 1)) { - *tbl |= filter(*tbl) ^ bit; - update_contribution(tbl, m1, m2); - *tbl ^= in; - } else if(filter(*tbl) == bit) { - *++*end = tbl[1]; - tbl[1] = tbl[0] | 1; - update_contribution(tbl, m1, m2); - *tbl++ ^= in; - update_contribution(tbl, m1, m2); - *tbl ^= in; - } else - *tbl-- = *(*end)--; -} -/** extend_table_simple - * using a bit of the keystream extend the table of possible lfsr states - */ -static inline void extend_table_simple(uint32_t *tbl, uint32_t **end, int bit) -{ - for(*tbl <<= 1; tbl <= *end; *++tbl <<= 1) { - if(filter(*tbl) ^ filter(*tbl | 1)) { // replace - *tbl |= filter(*tbl) ^ bit; - } else if(filter(*tbl) == bit) { // insert - *++*end = *++tbl; - *tbl = tbl[-1] | 1; - } else { // drop - *tbl-- = *(*end)--; -} - } -} -/** recover - * recursively narrow down the search space, 4 bits of keystream at a time - */ -static struct Crypto1State* -recover(uint32_t *o_head, uint32_t *o_tail, uint32_t oks, - uint32_t *e_head, uint32_t *e_tail, uint32_t eks, int rem, - struct Crypto1State *sl, uint32_t in, bucket_array_t bucket) -{ - uint32_t *o, *e; - bucket_info_t bucket_info; - - if(rem == -1) { - for(e = e_head; e <= e_tail; ++e) { - *e = *e << 1 ^ evenparity32(*e & LF_POLY_EVEN) ^ !!(in & 4); - for(o = o_head; o <= o_tail; ++o, ++sl) { - sl->even = *o; - sl->odd = *e ^ evenparity32(*o & LF_POLY_ODD); - sl[1].odd = sl[1].even = 0; - } - } - return sl; - } - - for(uint32_t i = 0; i < 4 && rem--; i++) { - oks >>= 1; - eks >>= 1; - in >>= 2; - extend_table(o_head, &o_tail, oks & 1, LF_POLY_EVEN << 1 | 1, LF_POLY_ODD << 1, 0); - if(o_head > o_tail) - return sl; - - extend_table(e_head, &e_tail, eks & 1, LF_POLY_ODD, LF_POLY_EVEN << 1 | 1, in & 3); - if(e_head > e_tail) - return sl; - } - - bucket_sort_intersect(e_head, e_tail, o_head, o_tail, &bucket_info, bucket); - - for (int i = bucket_info.numbuckets - 1; i >= 0; i--) { - sl = recover(bucket_info.bucket_info[1][i].head, bucket_info.bucket_info[1][i].tail, oks, - bucket_info.bucket_info[0][i].head, bucket_info.bucket_info[0][i].tail, eks, - rem, sl, in, bucket); - } - - return sl; -} -/** lfsr_recovery - * recover the state of the lfsr given 32 bits of the keystream - * additionally you can use the in parameter to specify the value - * that was fed into the lfsr at the time the keystream was generated - */ -struct Crypto1State* lfsr_recovery32(uint32_t ks2, uint32_t in) -{ - struct Crypto1State *statelist; - uint32_t *odd_head = 0, *odd_tail = 0, oks = 0; - uint32_t *even_head = 0, *even_tail = 0, eks = 0; - int i; - - // split the keystream into an odd and even part - for (i = 31; i >= 0; i -= 2) - oks = oks << 1 | BEBIT(ks2, i); - for (i = 30; i >= 0; i -= 2) - eks = eks << 1 | BEBIT(ks2, i); - - odd_head = odd_tail = malloc(sizeof(uint32_t) << 21); - even_head = even_tail = malloc(sizeof(uint32_t) << 21); - statelist = malloc(sizeof(struct Crypto1State) << 18); - if (!odd_tail-- || !even_tail-- || !statelist) { - free(statelist); - statelist = 0; - goto out; - } - - statelist->odd = statelist->even = 0; - - // allocate memory for out of place bucket_sort - bucket_array_t bucket; - - for (uint32_t i = 0; i < 2; i++) { - for (uint32_t j = 0; j <= 0xff; j++) { - bucket[i][j].head = malloc(sizeof(uint32_t) << 14); - if (!bucket[i][j].head) { - goto out; - } - } - } - - // initialize statelists: add all possible states which would result into the rightmost 2 bits of the keystream - for(i = 1 << 20; i >= 0; --i) { - if(filter(i) == (oks & 1)) - *++odd_tail = i; - if(filter(i) == (eks & 1)) - *++even_tail = i; - } - - // extend the statelists. Look at the next 8 Bits of the keystream (4 Bit each odd and even): - for(i = 0; i < 4; i++) { - extend_table_simple(odd_head, &odd_tail, (oks >>= 1) & 1); - extend_table_simple(even_head, &even_tail, (eks >>= 1) & 1); - } - - // the statelists now contain all states which could have generated the last 10 Bits of the keystream. - // 22 bits to go to recover 32 bits in total. From now on, we need to take the "in" - // parameter into account. - in = (in >> 16 & 0xff) | (in << 16) | (in & 0xff00); // Byte swapping - recover(odd_head, odd_tail, oks, even_head, even_tail, eks, 11, statelist, in << 1, bucket); - -out: - for (uint32_t i = 0; i < 2; i++) - for (uint32_t j = 0; j <= 0xff; j++) - free(bucket[i][j].head); - free(odd_head); - free(even_head); - return statelist; -} - -static const uint32_t S1[] = { 0x62141, 0x310A0, 0x18850, 0x0C428, 0x06214, - 0x0310A, 0x85E30, 0xC69AD, 0x634D6, 0xB5CDE, 0xDE8DA, 0x6F46D, 0xB3C83, - 0x59E41, 0xA8995, 0xD027F, 0x6813F, 0x3409F, 0x9E6FA}; -static const uint32_t S2[] = { 0x3A557B00, 0x5D2ABD80, 0x2E955EC0, 0x174AAF60, - 0x0BA557B0, 0x05D2ABD8, 0x0449DE68, 0x048464B0, 0x42423258, 0x278192A8, - 0x156042D0, 0x0AB02168, 0x43F89B30, 0x61FC4D98, 0x765EAD48, 0x7D8FDD20, - 0x7EC7EE90, 0x7F63F748, 0x79117020}; -static const uint32_t T1[] = { - 0x4F37D, 0x279BE, 0x97A6A, 0x4BD35, 0x25E9A, 0x12F4D, 0x097A6, 0x80D66, - 0xC4006, 0x62003, 0xB56B4, 0x5AB5A, 0xA9318, 0xD0F39, 0x6879C, 0xB057B, - 0x582BD, 0x2C15E, 0x160AF, 0x8F6E2, 0xC3DC4, 0xE5857, 0x72C2B, 0x39615, - 0x98DBF, 0xC806A, 0xE0680, 0x70340, 0x381A0, 0x98665, 0x4C332, 0xA272C}; -static const uint32_t T2[] = { 0x3C88B810, 0x5E445C08, 0x2982A580, 0x14C152C0, - 0x4A60A960, 0x253054B0, 0x52982A58, 0x2FEC9EA8, 0x1156C4D0, 0x08AB6268, - 0x42F53AB0, 0x217A9D58, 0x161DC528, 0x0DAE6910, 0x46D73488, 0x25CB11C0, - 0x52E588E0, 0x6972C470, 0x34B96238, 0x5CFC3A98, 0x28DE96C8, 0x12CFC0E0, - 0x4967E070, 0x64B3F038, 0x74F97398, 0x7CDC3248, 0x38CE92A0, 0x1C674950, - 0x0E33A4A8, 0x01B959D0, 0x40DCACE8, 0x26CEDDF0}; -static const uint32_t C1[] = { 0x846B5, 0x4235A, 0x211AD}; -static const uint32_t C2[] = { 0x1A822E0, 0x21A822E0, 0x21A822E0}; -/** Reverse 64 bits of keystream into possible cipher states - * Variation mentioned in the paper. Somewhat optimized version - */ -struct Crypto1State* lfsr_recovery64(uint32_t ks2, uint32_t ks3) -{ - struct Crypto1State *statelist, *sl; - uint8_t oks[32], eks[32], hi[32]; - uint32_t low = 0, win = 0; - uint32_t *tail, table[1 << 16]; - int i, j; - - sl = statelist = malloc(sizeof(struct Crypto1State) << 4); - if(!sl) - return 0; - sl->odd = sl->even = 0; - - for(i = 30; i >= 0; i -= 2) { - oks[i >> 1] = BEBIT(ks2, i); - oks[16 + (i >> 1)] = BEBIT(ks3, i); - } - for(i = 31; i >= 0; i -= 2) { - eks[i >> 1] = BEBIT(ks2, i); - eks[16 + (i >> 1)] = BEBIT(ks3, i); - } - - for(i = 0xfffff; i >= 0; --i) { - if (filter(i) != oks[0]) - continue; - - *(tail = table) = i; - for(j = 1; tail >= table && j < 29; ++j) - extend_table_simple(table, &tail, oks[j]); - - if(tail < table) - continue; - - for(j = 0; j < 19; ++j) - low = low << 1 | evenparity32(i & S1[j]); - for(j = 0; j < 32; ++j) - hi[j] = evenparity32(i & T1[j]); - - for(; tail >= table; --tail) { - for(j = 0; j < 3; ++j) { - *tail = *tail << 1; - *tail |= evenparity32((i & C1[j]) ^ (*tail & C2[j])); - if(filter(*tail) != oks[29 + j]) - goto continue2; - } - - for(j = 0; j < 19; ++j) - win = win << 1 | evenparity32(*tail & S2[j]); - - win ^= low; - for(j = 0; j < 32; ++j) { - win = win << 1 ^ hi[j] ^ evenparity32(*tail & T2[j]); - if(filter(win) != eks[j]) - goto continue2; - } - - *tail = *tail << 1 | evenparity32(LF_POLY_EVEN & *tail); - sl->odd = *tail ^ evenparity32(LF_POLY_ODD & win); - sl->even = win; - ++sl; - sl->odd = sl->even = 0; - continue2:; - } - } - return statelist; -} - -/** lfsr_rollback_bit - * Rollback the shift register in order to get previous states - */ -uint8_t lfsr_rollback_bit(struct Crypto1State *s, uint32_t in, int fb) -{ - int out; - uint8_t ret; - uint32_t t; - - s->odd &= 0xffffff; - t = s->odd, s->odd = s->even, s->even = t; - - out = s->even & 1; - out ^= LF_POLY_EVEN & (s->even >>= 1); - out ^= LF_POLY_ODD & s->odd; - out ^= !!in; - out ^= (ret = filter(s->odd)) & !!fb; - - s->even |= evenparity32(out) << 23; - return ret; -} -/** lfsr_rollback_byte - * Rollback the shift register in order to get previous states - */ -uint8_t lfsr_rollback_byte(struct Crypto1State *s, uint32_t in, int fb) -{ - /* - int i, ret=0; - for (i = 7; i >= 0; --i) - ret |= lfsr_rollback_bit(s, BIT(in, i), fb) << i; -*/ -// unfold loop 20160112 - uint8_t ret = 0; - ret |= lfsr_rollback_bit(s, BIT(in, 7), fb) << 7; - ret |= lfsr_rollback_bit(s, BIT(in, 6), fb) << 6; - ret |= lfsr_rollback_bit(s, BIT(in, 5), fb) << 5; - ret |= lfsr_rollback_bit(s, BIT(in, 4), fb) << 4; - ret |= lfsr_rollback_bit(s, BIT(in, 3), fb) << 3; - ret |= lfsr_rollback_bit(s, BIT(in, 2), fb) << 2; - ret |= lfsr_rollback_bit(s, BIT(in, 1), fb) << 1; - ret |= lfsr_rollback_bit(s, BIT(in, 0), fb) << 0; - return ret; -} -/** lfsr_rollback_word - * Rollback the shift register in order to get previous states - */ -uint32_t lfsr_rollback_word(struct Crypto1State *s, uint32_t in, int fb) -{ - /* - int i; - uint32_t ret = 0; - for (i = 31; i >= 0; --i) - ret |= lfsr_rollback_bit(s, BEBIT(in, i), fb) << (i ^ 24); -*/ -// unfold loop 20160112 - uint32_t ret = 0; - ret |= lfsr_rollback_bit(s, BEBIT(in, 31), fb) << (31 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 30), fb) << (30 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 29), fb) << (29 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 28), fb) << (28 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 27), fb) << (27 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 26), fb) << (26 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 25), fb) << (25 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 24), fb) << (24 ^ 24); - - ret |= lfsr_rollback_bit(s, BEBIT(in, 23), fb) << (23 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 22), fb) << (22 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 21), fb) << (21 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 20), fb) << (20 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 19), fb) << (19 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 18), fb) << (18 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 17), fb) << (17 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 16), fb) << (16 ^ 24); - - ret |= lfsr_rollback_bit(s, BEBIT(in, 15), fb) << (15 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 14), fb) << (14 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 13), fb) << (13 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 12), fb) << (12 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 11), fb) << (11 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 10), fb) << (10 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 9), fb) << (9 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 8), fb) << (8 ^ 24); - - ret |= lfsr_rollback_bit(s, BEBIT(in, 7), fb) << (7 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 6), fb) << (6 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 5), fb) << (5 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 4), fb) << (4 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 3), fb) << (3 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 2), fb) << (2 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 1), fb) << (1 ^ 24); - ret |= lfsr_rollback_bit(s, BEBIT(in, 0), fb) << (0 ^ 24); - return ret; -} - -/** nonce_distance - * x,y valid tag nonces, then prng_successor(x, nonce_distance(x, y)) = y - */ -static uint16_t *dist = 0; -int nonce_distance(uint32_t from, uint32_t to) -{ - uint16_t x, i; - if(!dist) { - dist = malloc(2 << 16); - if(!dist) - return -1; - for (x = i = 1; i; ++i) { - dist[(x & 0xff) << 8 | x >> 8] = i; - x = x >> 1 | (x ^ x >> 2 ^ x >> 3 ^ x >> 5) << 15; - } - } - return (65535 + dist[to >> 16] - dist[from >> 16]) % 65535; -} - -/** validate_prng_nonce - * Determine if nonce is deterministic. ie: Suspectable to Darkside attack. - * returns - * true = weak prng - * false = hardend prng - */ -bool validate_prng_nonce(uint32_t nonce) { - // init prng table: - nonce_distance(nonce, nonce); - return ((65535 - dist[nonce >> 16] + dist[nonce & 0xffff]) % 65535) == 16; -} - -static uint32_t fastfwd[2][8] = { - { 0, 0x4BC53, 0xECB1, 0x450E2, 0x25E29, 0x6E27A, 0x2B298, 0x60ECB}, - { 0, 0x1D962, 0x4BC53, 0x56531, 0xECB1, 0x135D3, 0x450E2, 0x58980}}; - -/** lfsr_prefix_ks - * - * Is an exported helper function from the common prefix attack - * Described in the "dark side" paper. It returns an -1 terminated array - * of possible partial(21 bit) secret state. - * The required keystream(ks) needs to contain the keystream that was used to - * encrypt the NACK which is observed when varying only the 3 last bits of Nr - * only correct iff [NR_3] ^ NR_3 does not depend on Nr_3 - */ -uint32_t *lfsr_prefix_ks(uint8_t ks[8], int isodd) -{ - uint32_t *candidates = malloc(4 << 10); - if (!candidates) return 0; - - uint32_t c, entry; - int size = 0, i, good; - - for (i = 0; i < 1 << 21; ++i) { - for (c = 0, good = 1; good && c < 8; ++c) { - entry = i ^ fastfwd[isodd][c]; - good &= (BIT(ks[c], isodd) == filter(entry >> 1)); - good &= (BIT(ks[c], isodd + 2) == filter(entry)); - } - if (good) - candidates[size++] = i; - } - - candidates[size] = -1; - - return candidates; -} - -/** check_pfx_parity - * helper function which eliminates possible secret states using parity bits - */ -static struct Crypto1State* check_pfx_parity(uint32_t prefix, uint32_t rresp, uint8_t parities[8][8], uint32_t odd, uint32_t even, struct Crypto1State* sl, uint32_t no_par) -{ - uint32_t ks1, nr, ks2, rr, ks3, c, good = 1; - - for(c = 0; good && c < 8; ++c) { - sl->odd = odd ^ fastfwd[1][c]; - sl->even = even ^ fastfwd[0][c]; - - lfsr_rollback_bit(sl, 0, 0); - lfsr_rollback_bit(sl, 0, 0); - - ks3 = lfsr_rollback_bit(sl, 0, 0); - ks2 = lfsr_rollback_word(sl, 0, 0); - ks1 = lfsr_rollback_word(sl, prefix | c << 5, 1); - - if (no_par) - break; - - nr = ks1 ^ (prefix | c << 5); - rr = ks2 ^ rresp; - - good &= evenparity32(nr & 0x000000ff) ^ parities[c][3] ^ BIT(ks2, 24); - good &= evenparity32(rr & 0xff000000) ^ parities[c][4] ^ BIT(ks2, 16); - good &= evenparity32(rr & 0x00ff0000) ^ parities[c][5] ^ BIT(ks2, 8); - good &= evenparity32(rr & 0x0000ff00) ^ parities[c][6] ^ BIT(ks2, 0); - good &= evenparity32(rr & 0x000000ff) ^ parities[c][7] ^ ks3; - } - - return sl + good; -} - - -/** lfsr_common_prefix - * Implentation of the common prefix attack. - * Requires the 28 bit constant prefix used as reader nonce (pfx) - * The reader response used (rr) - * The keystream used to encrypt the observed NACK's (ks) - * The parity bits (par) - * It returns a zero terminated list of possible cipher states after the - * tag nonce was fed in - */ - -struct Crypto1State* lfsr_common_prefix(uint32_t pfx, uint32_t rr, uint8_t ks[8], uint8_t par[8][8], uint32_t no_par) -{ - struct Crypto1State *statelist, *s; - uint32_t *odd, *even, *o, *e, top; - - odd = lfsr_prefix_ks(ks, 1); - even = lfsr_prefix_ks(ks, 0); - - s = statelist = malloc((sizeof *statelist) << 24); // was << 20. Need more for no_par special attack. Enough??? - if (!s || !odd || !even) { - free(statelist); - statelist = 0; - goto out; - } - - for (o = odd; *o + 1; ++o) - for (e = even; *e + 1; ++e) - for (top = 0; top < 64; ++top) { - *o += 1 << 21; - *e += (!(top & 7) + 1) << 21; - s = check_pfx_parity(pfx, rr, par, *o, *e, s, no_par); - } - - s->odd = s->even = 0; -out: - free(odd); - free(even); - return statelist; -} diff --git a/mfkey_32_64/src/main/cpp/crapto1.h b/mfkey_32_64/src/main/cpp/crapto1.h deleted file mode 100644 index c941879c..00000000 --- a/mfkey_32_64/src/main/cpp/crapto1.h +++ /dev/null @@ -1,84 +0,0 @@ -/* crapto1.h - - This program is free software; you can redistribute it and/or - modify it under the terms of the GNU General Public License - as published by the Free Software Foundation; either version 2 - of the License, or (at your option) any later version. - - This program is distributed in the hope that it will be useful, - but WITHOUT ANY WARRANTY; without even the implied warranty of - MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - GNU General Public License for more details. - - You should have received a copy of the GNU General Public License - along with this program; if not, write to the Free Software - Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, - MA 02110-1301, US$ - - Copyright (C) 2008-2014 bla -*/ -#ifndef CRAPTO1_INCLUDED -#define CRAPTO1_INCLUDED -#include -#include -#include "bucketsort.h" - -#ifdef __cplusplus -extern "C" { -#endif - -struct Crypto1State {uint32_t odd, even;}; -#if defined(__arm__) && !defined(__linux__) && !defined(_WIN32) && !defined(__APPLE__) // bare metal ARM Proxmark lacks malloc()/free() -void crypto1_create(struct Crypto1State *s, uint64_t key); -#else -struct Crypto1State *crypto1_create(uint64_t key); -#endif -void crypto1_destroy(struct Crypto1State*); -void crypto1_get_lfsr(struct Crypto1State*, uint64_t*); -uint8_t crypto1_bit(struct Crypto1State*, uint8_t, int); -uint8_t crypto1_byte(struct Crypto1State*, uint8_t, int); -uint32_t crypto1_word(struct Crypto1State*, uint32_t, int); -uint32_t prng_successor(uint32_t x, uint32_t n); - -struct Crypto1State* lfsr_recovery32(uint32_t ks2, uint32_t in); -struct Crypto1State* lfsr_recovery64(uint32_t ks2, uint32_t ks3); -uint32_t *lfsr_prefix_ks(uint8_t ks[8], int isodd); -struct Crypto1State* -lfsr_common_prefix(uint32_t pfx, uint32_t rr, uint8_t ks[8], uint8_t par[8][8], uint32_t no_par); - - -uint8_t lfsr_rollback_bit(struct Crypto1State* s, uint32_t in, int fb); -uint8_t lfsr_rollback_byte(struct Crypto1State* s, uint32_t in, int fb); -uint32_t lfsr_rollback_word(struct Crypto1State* s, uint32_t in, int fb); -int nonce_distance(uint32_t from, uint32_t to); -extern bool validate_prng_nonce(uint32_t nonce); -#define FOREACH_VALID_NONCE(N, FILTER, FSIZE)\ - uint32_t __n = 0,__M = 0, N = 0;\ - int __i;\ - for(; __n < 1 << 16; N = prng_successor(__M = ++__n, 16))\ - for(__i = FSIZE - 1; __i >= 0; __i--)\ - if(BIT(FILTER, __i) ^ evenparity32(__M & 0xFF01))\ - break;\ - else if(__i)\ - __M = prng_successor(__M, (__i == 7) ? 48 : 8);\ - else - -#define LF_POLY_ODD (0x29CE5C) -#define LF_POLY_EVEN (0x870804) -#define BIT(x, n) ((x) >> (n) & 1) -#define BEBIT(x, n) BIT(x, (n) ^ 24) -static inline int filter(uint32_t const x) -{ - uint32_t f; - - f = 0xf22c0 >> (x & 0xf) & 16; - f |= 0x6c9c0 >> (x >> 4 & 0xf) & 8; - f |= 0x3c8b0 >> (x >> 8 & 0xf) & 4; - f |= 0x1e458 >> (x >> 12 & 0xf) & 2; - f |= 0x0d938 >> (x >> 16 & 0xf) & 1; - return BIT(0xEC57E80A, f); -} -#ifdef __cplusplus -} -#endif -#endif diff --git a/mfkey_32_64/src/main/cpp/crypto1.c b/mfkey_32_64/src/main/cpp/crypto1.c deleted file mode 100644 index bc0e7337..00000000 --- a/mfkey_32_64/src/main/cpp/crypto1.c +++ /dev/null @@ -1,168 +0,0 @@ -/* crypto1.c - - This program is free software; you can redistribute it and/or - modify it under the terms of the GNU General Public License - as published by the Free Software Foundation; either version 2 - of the License, or (at your option) any later version. - - This program is distributed in the hope that it will be useful, - but WITHOUT ANY WARRANTY; without even the implied warranty of - MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - GNU General Public License for more details. - - You should have received a copy of the GNU General Public License - along with this program; if not, write to the Free Software - Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, - MA 02110-1301, US - - Copyright (C) 2008-2008 bla -*/ -#include "crapto1.h" - -#include -#include "parity.h" - -#define SWAPENDIAN(x)\ - (x = (x >> 8 & 0xff00ff) | (x & 0xff00ff) << 8, x = x >> 16 | x << 16) - -#if defined(__arm__) && !defined(__linux__) && !defined(_WIN32) && !defined(__APPLE__) // bare metal ARM Proxmark lacks malloc()/free() -void crypto1_create(struct Crypto1State *s, uint64_t key) -{ - int i; - - for(i = 47;s && i > 0; i -= 2) { - s->odd = s->odd << 1 | BIT(key, (i - 1) ^ 7); - s->even = s->even << 1 | BIT(key, i ^ 7); - } - return; -} -void crypto1_destroy(struct Crypto1State *state) -{ - state->odd = 0; - state->even = 0; -} -#else -struct Crypto1State * crypto1_create(uint64_t key) -{ - struct Crypto1State *s = malloc(sizeof(*s)); - if ( !s ) return NULL; - - s->odd = s->even = 0; - - int i; - //for(i = 47;s && i > 0; i -= 2) { - for(i = 47; i > 0; i -= 2) { - s->odd = s->odd << 1 | BIT(key, (i - 1) ^ 7); - s->even = s->even << 1 | BIT(key, i ^ 7); - } - return s; -} -void crypto1_destroy(struct Crypto1State *state) -{ - free(state); -} -#endif -void crypto1_get_lfsr(struct Crypto1State *state, uint64_t *lfsr) -{ - int i; - for(*lfsr = 0, i = 23; i >= 0; --i) { - *lfsr = *lfsr << 1 | BIT(state->odd, i ^ 3); - *lfsr = *lfsr << 1 | BIT(state->even, i ^ 3); - } -} -uint8_t crypto1_bit(struct Crypto1State *s, uint8_t in, int is_encrypted) -{ - uint32_t feedin, t; - uint8_t ret = filter(s->odd); - - feedin = ret & !!is_encrypted; - feedin ^= !!in; - feedin ^= LF_POLY_ODD & s->odd; - feedin ^= LF_POLY_EVEN & s->even; - s->even = s->even << 1 | evenparity32(feedin); - - t = s->odd; - s->odd = s->even; - s->even = t; - - return ret; -} -uint8_t crypto1_byte(struct Crypto1State *s, uint8_t in, int is_encrypted) -{ - /* - uint8_t i, ret = 0; - - for (i = 0; i < 8; ++i) - ret |= crypto1_bit(s, BIT(in, i), is_encrypted) << i; - */ -// unfold loop 20161012 - uint8_t ret = 0; - ret |= crypto1_bit(s, BIT(in, 0), is_encrypted) << 0; - ret |= crypto1_bit(s, BIT(in, 1), is_encrypted) << 1; - ret |= crypto1_bit(s, BIT(in, 2), is_encrypted) << 2; - ret |= crypto1_bit(s, BIT(in, 3), is_encrypted) << 3; - ret |= crypto1_bit(s, BIT(in, 4), is_encrypted) << 4; - ret |= crypto1_bit(s, BIT(in, 5), is_encrypted) << 5; - ret |= crypto1_bit(s, BIT(in, 6), is_encrypted) << 6; - ret |= crypto1_bit(s, BIT(in, 7), is_encrypted) << 7; - return ret; -} -uint32_t crypto1_word(struct Crypto1State *s, uint32_t in, int is_encrypted) -{ - /* - uint32_t i, ret = 0; - - for (i = 0; i < 32; ++i) - ret |= crypto1_bit(s, BEBIT(in, i), is_encrypted) << (i ^ 24); -*/ -//unfold loop 2016012 - uint32_t ret = 0; - ret |= crypto1_bit(s, BEBIT(in, 0), is_encrypted) << (0 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 1), is_encrypted) << (1 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 2), is_encrypted) << (2 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 3), is_encrypted) << (3 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 4), is_encrypted) << (4 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 5), is_encrypted) << (5 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 6), is_encrypted) << (6 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 7), is_encrypted) << (7 ^ 24); - - ret |= crypto1_bit(s, BEBIT(in, 8), is_encrypted) << (8 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 9), is_encrypted) << (9 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 10), is_encrypted) << (10 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 11), is_encrypted) << (11 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 12), is_encrypted) << (12 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 13), is_encrypted) << (13 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 14), is_encrypted) << (14 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 15), is_encrypted) << (15 ^ 24); - - ret |= crypto1_bit(s, BEBIT(in, 16), is_encrypted) << (16 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 17), is_encrypted) << (17 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 18), is_encrypted) << (18 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 19), is_encrypted) << (19 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 20), is_encrypted) << (20 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 21), is_encrypted) << (21 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 22), is_encrypted) << (22 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 23), is_encrypted) << (23 ^ 24); - - ret |= crypto1_bit(s, BEBIT(in, 24), is_encrypted) << (24 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 25), is_encrypted) << (25 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 26), is_encrypted) << (26 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 27), is_encrypted) << (27 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 28), is_encrypted) << (28 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 29), is_encrypted) << (29 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 30), is_encrypted) << (30 ^ 24); - ret |= crypto1_bit(s, BEBIT(in, 31), is_encrypted) << (31 ^ 24); - return ret; -} - -/* prng_successor - * helper used to obscure the keystream during authentication - */ -uint32_t prng_successor(uint32_t x, uint32_t n) -{ - SWAPENDIAN(x); - while(n--) - x = x >> 1 | (x >> 16 ^ x >> 18 ^ x >> 19 ^ x >> 21) << 31; - - return SWAPENDIAN(x); -} diff --git a/mfkey_32_64/src/main/cpp/mfkey.c b/mfkey_32_64/src/main/cpp/mfkey.c deleted file mode 100644 index b35a3104..00000000 --- a/mfkey_32_64/src/main/cpp/mfkey.c +++ /dev/null @@ -1,173 +0,0 @@ -//----------------------------------------------------------------------------- -// Merlok - June 2011 -// Roel - Dec 2009 -// Unknown author -// -// This code is licensed to you under the terms of the GNU GPL, version 2 or, -// at your option, any later version. See the LICENSE.txt file for the text of -// the license. -//----------------------------------------------------------------------------- -// MIFARE Darkside hack -//----------------------------------------------------------------------------- -#include "mfkey.h" - -// MIFARE -int compare_uint64(const void *a, const void *b) { - if (*(uint64_t*)b == *(uint64_t*)a) return 0; - if (*(uint64_t*)b < *(uint64_t*)a) return 1; - return -1; -} - -// create the intersection (common members) of two sorted lists. Lists are terminated by -1. Result will be in list1. Number of elements is returned. -uint32_t intersection(uint64_t *listA, uint64_t *listB) { - if (listA == NULL || listB == NULL) - return 0; - - uint64_t *p1, *p2, *p3; - p1 = p3 = listA; - p2 = listB; - - while ( *p1 != -1 && *p2 != -1 ) { - if (compare_uint64(p1, p2) == 0) { - *p3++ = *p1++; - p2++; - } - else { - while (compare_uint64(p1, p2) < 0) ++p1; - while (compare_uint64(p1, p2) > 0) ++p2; - } - } - *p3 = -1; - return p3 - listA; -} - -// Darkside attack (hf mf mifare) -// if successful it will return a list of keys, not just one. -uint32_t nonce2key(uint32_t uid, uint32_t nt, uint32_t nr, uint32_t ar, uint64_t par_info, uint64_t ks_info, uint64_t **keys) { - struct Crypto1State *states; - uint32_t i, pos; - uint8_t bt, ks3x[8], par[8][8]; - uint64_t key_recovered; - uint64_t *keylist; - - // Reset the last three significant bits of the reader nonce - nr &= 0xFFFFFF1F; - - for ( pos = 0; pos < 8; pos++ ) { - ks3x[7-pos] = (ks_info >> (pos*8)) & 0x0F; - bt = (par_info >> (pos*8)) & 0xFF; - - par[7-pos][0] = (bt >> 0) & 1; - par[7-pos][1] = (bt >> 1) & 1; - par[7-pos][2] = (bt >> 2) & 1; - par[7-pos][3] = (bt >> 3) & 1; - par[7-pos][4] = (bt >> 4) & 1; - par[7-pos][5] = (bt >> 5) & 1; - par[7-pos][6] = (bt >> 6) & 1; - par[7-pos][7] = (bt >> 7) & 1; - } - - states = lfsr_common_prefix(nr, ar, ks3x, par, (par_info == 0)); - - if (!states) { - *keys = NULL; - return 0; - } - - keylist = (uint64_t*)states; - - for (i = 0; keylist[i]; i++) { - lfsr_rollback_word(states+i, uid ^ nt, 0); - crypto1_get_lfsr(states+i, &key_recovered); - keylist[i] = key_recovered; - } - keylist[i] = -1; - - *keys = keylist; - return i; -} - -// recover key from 2 different reader responses on same tag challenge -bool mfkey32(nonces_t data, uint64_t *outputkey) { - struct Crypto1State *s,*t; - uint64_t outkey = 0; - uint64_t key = 0; // recovered key - bool isSuccess = false; - uint8_t counter = 0; - - uint32_t p640 = prng_successor(data.nonce, 64); - uint32_t p641 = prng_successor(data.nonce2, 64); - s = lfsr_recovery32(data.ar ^ p640, 0); - - for(t = s; t->odd | t->even; ++t) { - lfsr_rollback_word(t, 0, 0); - lfsr_rollback_word(t, data.nr, 1); - lfsr_rollback_word(t, data.cuid ^ data.nonce, 0); - crypto1_get_lfsr(t, &key); - crypto1_word(t, data.cuid ^ data.nonce, 0); - crypto1_word(t, data.nr2, 1); - if (data.ar2 == (crypto1_word(t, 0, 0) ^ p641)) { - outkey = key; - counter++; - if (counter == 20) break; - } - } - isSuccess = (counter == 1); - *outputkey = ( isSuccess ) ? outkey : 0; - crypto1_destroy(s); - return isSuccess; -} - -// recover key from 2 reader responses on 2 different tag challenges -// skip "several found keys". Only return true if ONE key is found -bool mfkey32_moebius(nonces_t data, uint64_t *outputkey) { - struct Crypto1State *s, *t; - uint64_t outkey = 0; - uint64_t key = 0; // recovered key - bool isSuccess = false; - int counter = 0; - uint32_t p640 = prng_successor(data.nonce, 64); - uint32_t p641 = prng_successor(data.nonce2, 64); - - s = lfsr_recovery32(data.ar ^ p640, 0); - - for(t = s; t->odd | t->even; ++t) { - lfsr_rollback_word(t, 0, 0); - lfsr_rollback_word(t, data.nr, 1); - lfsr_rollback_word(t, data.cuid ^ data.nonce, 0); - crypto1_get_lfsr(t, &key); - - crypto1_word(t, data.cuid ^ data.nonce2, 0); - crypto1_word(t, data.nr2, 1); - if (data.ar2 == (crypto1_word(t, 0, 0) ^ p641)) { - outkey = key; - ++counter; - if (counter == 20) break; - } - } - isSuccess = (counter == 1); - *outputkey = ( isSuccess ) ? outkey : 0; - crypto1_destroy(s); - return isSuccess; -} - -// recover key from reader response and tag response of one authentication sequence -int mfkey64(nonces_t data, uint64_t *outputkey){ - uint64_t key = 0; // recovered key - uint32_t ks2; // keystream used to encrypt reader response - uint32_t ks3; // keystream used to encrypt tag response - struct Crypto1State *revstate; - - // Extract the keystream from the messages - ks2 = data.ar ^ prng_successor(data.nonce, 64); - ks3 = data.at ^ prng_successor(data.nonce, 96); - revstate = lfsr_recovery64(ks2, ks3); - lfsr_rollback_word(revstate, 0, 0); - lfsr_rollback_word(revstate, 0, 0); - lfsr_rollback_word(revstate, data.nr, 1); - lfsr_rollback_word(revstate, data.cuid ^ data.nonce, 0); - crypto1_get_lfsr(revstate, &key); - crypto1_destroy(revstate); - *outputkey = key; - return 0; -} diff --git a/mfkey_32_64/src/main/cpp/mfkey.h b/mfkey_32_64/src/main/cpp/mfkey.h deleted file mode 100644 index 24c49dd1..00000000 --- a/mfkey_32_64/src/main/cpp/mfkey.h +++ /dev/null @@ -1,30 +0,0 @@ -//----------------------------------------------------------------------------- -// Merlok - June 2011 -// Roel - Dec 2009 -// Unknown author -// -// This code is licensed to you under the terms of the GNU GPL, version 2 or, -// at your option, any later version. See the LICENSE.txt file for the text of -// the license. -//----------------------------------------------------------------------------- -// MIFARE Darkside hack -//----------------------------------------------------------------------------- - -#ifndef MFKEY_H -#define MFKEY_H - -#include -#include -#include -#include "mifare.h" -#include "crapto1.h" - -extern uint32_t nonce2key(uint32_t uid, uint32_t nt, uint32_t nr, uint32_t ar, uint64_t par_info, uint64_t ks_info, uint64_t **keys); -extern bool mfkey32(nonces_t data, uint64_t *outputkey); -extern bool mfkey32_moebius(nonces_t data, uint64_t *outputkey); -extern int mfkey64(nonces_t data, uint64_t *outputkey); - -extern int compare_uint64(const void *a, const void *b); -extern uint32_t intersection(uint64_t *listA, uint64_t *listB); - -#endif diff --git a/mfkey_32_64/src/main/cpp/mfkey32.c b/mfkey_32_64/src/main/cpp/mfkey32.c deleted file mode 100644 index 1be3e0b4..00000000 --- a/mfkey_32_64/src/main/cpp/mfkey32.c +++ /dev/null @@ -1,271 +0,0 @@ -#include -#include -#include -#include -#include -#include -#include "crapto1.h" -#include "mfkey.h" -#include "util_posix.h" -#include "tools.h" - -static volatile bool isRunning = false; -static volatile bool stop_label = false; - -// 32 bit recover key from 2 nonces -int main32(int argc, char *argv[]) { - nonces_t data = {0}; - uint32_t ks2; // keystream used to encrypt reader response - uint64_t key; // recovered key - - printf("MIFARE Classic key recovery - based on 32 bits of keystream\n"); - printf("Recover key from two 32-bit reader authentication answers only!\n\n"); - - if (argc != 7 && argc != 8) { - printf(" syntax: %s <{nr_0}> <{ar_0}> [] <{nr_1}> <{ar_1}>\n", argv[0]); - printf(" (you may omit nt1 if it is equal to nt0)\n\n"); - return 1; - } - - bool moebius_attack = (argc == 8); - - sscanf(argv[1], "%x", &data.cuid); - sscanf(argv[2], "%x", &data.nonce); - data.nonce2 = data.nonce; - sscanf(argv[3], "%x", &data.nr); - sscanf(argv[4], "%x", &data.ar); - if (moebius_attack) { - sscanf(argv[5], "%x", &data.nonce2); - sscanf(argv[6], "%x", &data.nr2); - sscanf(argv[7], "%x", &data.ar2); - } else { - sscanf(argv[5], "%x", &data.nr2); - sscanf(argv[6], "%x", &data.ar2); - } - - printf("Recovering key for:\n"); - printf(" uid: %08x\n", data.cuid); - printf(" nt0: %08x\n", data.nonce); - printf(" {nr_0}: %08x\n", data.nr); - printf(" {ar_0}: %08x\n", data.ar); - printf(" nt1: %08x\n", data.nonce2); - printf(" {nr_1}: %08x\n", data.nr2); - printf(" {ar_1}: %08x\n", data.ar2); - - uint64_t start_time = msclock(); - - // Generate lfsr succesors of the tag challenge - printf("\nLFSR succesors of the tag challenge:\n"); - printf(" nt': %08x\n", prng_successor(data.nonce, 64)); - printf(" nt'': %08x\n", prng_successor(data.nonce, 96)); - - // Extract the keystream from the messages - printf("\nKeystream used to generate {ar} and {at}:\n"); - ks2 = data.ar ^ prng_successor(data.nonce, 64); - printf(" ks2: %08x\n", ks2); - bool success; - if (moebius_attack) { - success = mfkey32_moebius(data, &key); - } else { - success = mfkey32(data, &key); - } - if (success) { - printf("Recovered key: %012" - PRIx64 - "\n", key); - } else { - printf("Couldn't recover key.\n"); - } - printf("Time spent: %1.2f seconds\n", (float) (msclock() - start_time) / 1000.0); -} - -jstring -decrypt4Ints(JNIEnv *env, jobject instance, - jint uid, - jint nt0, - jint nr0, - jint ar0, - jint nt1, - jint nr1, - jint ar1) { - nonces_t data = {0}; - uint64_t key; // recovered key - //判断是否可以忽略nt0 - bool moebius_attack = nt0 != nt1; - data.cuid = (uint32_t) uid; - data.nonce = (uint32_t) nt0; - data.nonce2 = data.nonce; - data.nr = (uint32_t) nr0; - data.ar = (uint32_t) ar0; - //注: 此处系命名规范问题,本人是从0下标命名! - if (moebius_attack) { - data.nonce2 = (uint32_t) nt1; - data.nr2 = (uint32_t) nr1; - data.ar2 = (uint32_t) ar1; - } else { - data.nr2 = (uint32_t) nr1; - data.ar2 = (uint32_t) ar1; - } - bool success; - if (moebius_attack) { - success = mfkey32_moebius(data, &key); - } else { - success = mfkey32(data, &key); - } - if (success) { - char ret[13] = {0}; - sprintf(ret, "%012"PRIx64, key); - return (*env)->NewStringUTF(env, ret); - } else { - return NULL; - } -} - -jstring -decrypt4Strs(JNIEnv *env, jobject instance, - jstring uid, - jstring nt0, - jstring nr0, - jstring ar0, - jstring nt1, - jstring nr1, - jstring ar1) { - //先将字符串转换为HEX字符! - const char *uidChars = (*env)->GetStringUTFChars(env, uid, 0); - const char *nt0Chars = (*env)->GetStringUTFChars(env, nt0, 0); - const char *nr0Chars = (*env)->GetStringUTFChars(env, nr0, 0); - const char *ar0Chars = (*env)->GetStringUTFChars(env, ar0, 0); - const char *nt1Chars = (*env)->GetStringUTFChars(env, nt1, 0); - const char *nr1Chars = (*env)->GetStringUTFChars(env, nr1, 0); - const char *ar1Chars = (*env)->GetStringUTFChars(env, ar1, 0); - - nonces_t data = {0}; - uint64_t key; // recovered key - - //判断两个字符串是否为相同,也就是两个随机数是否相同! - bool moebius_attack = strcmp(nt0Chars, nt1Chars) == 0; - - sscanf(uidChars, "%x", &data.cuid); - sscanf(nt0Chars, "%x", &data.nonce); - data.nonce2 = data.nonce; - sscanf(nr0Chars, "%x", &data.nr); - sscanf(ar0Chars, "%x", &data.ar); - if (moebius_attack) { - sscanf(nt1Chars, "%x", &data.nonce2); - sscanf(nr1Chars, "%x", &data.nr2); - sscanf(ar1Chars, "%x", &data.ar2); - } else { - sscanf(nr1Chars, "%x", &data.nr2); - sscanf(ar1Chars, "%x", &data.ar2); - } - - //TODO 谨记释放本地引用!避免栈溢出! - (*env)->ReleaseStringUTFChars(env, uid, uidChars); - (*env)->ReleaseStringUTFChars(env, nt0, nt0Chars); - (*env)->ReleaseStringUTFChars(env, nr0, nr0Chars); - (*env)->ReleaseStringUTFChars(env, ar0, ar0Chars); - (*env)->ReleaseStringUTFChars(env, nt1, nt1Chars); - (*env)->ReleaseStringUTFChars(env, nr1, nr1Chars); - (*env)->ReleaseStringUTFChars(env, ar1, ar1Chars); - - bool success; - if (moebius_attack) { - success = mfkey32_moebius(data, &key); - } else { - success = mfkey32(data, &key); - } - if (success) { - char ret[13] = {0}; - sprintf(ret, "%012"PRIx64, key); - return (*env)->NewStringUTF(env, ret); - } else { - return NULL; - } -} - -/* - * 执行命令! - * */ -jint startExecute(JNIEnv *env, jobject instance, jstring command_) { - //初始化JNIENV,这是必须的! - JNIEnv *tmpJniEnv = getJniEnv(); - //jboolean类型,控制是否为拷贝 - jboolean isCopy = 1; - const char *command = (*tmpJniEnv)->GetStringUTFChars(tmpJniEnv, command_, &isCopy); - //解析从JAVA端传入的命令 - CMD *cmd = parse_command_line(command); - if (cmd->len < 2) { - main32(0, cmd->cmd); - return EXIT_FAILURE; - } - //释放内存 - (*tmpJniEnv)->ReleaseStringUTFChars(tmpJniEnv, command_, command); - recovery_getopt_opt(); - isRunning = true; - stop_label = false; - printf("\n------------Begin------------\n"); - //TODO 记录开始执行的时间戳! - time_t start_time = time(NULL); - int ret = main32(cmd->len, cmd->cmd); - time_t end_time = time(NULL); - printf("\nINFO: execute time(s): %lf\n", difftime(end_time, start_time)); - printf("\n------------End------------\n"); - isRunning = false; - stop_label = false; - free_command_line(cmd); - return ret; -} - -/* - * 停止mfcuk - * */ -void stopExecute(JNIEnv *env, jobject instance) { - stop_label = true; -} - -/* - * 是否在执行当中 - * */ -jboolean isExecuting(JNIEnv *env, jobject instance) { - return (jboolean) isRunning; -} - -/* - * jvm加载so时的映射回调 - * */ -JNIEXPORT jint JNI_OnLoad(JavaVM *vm, void *reserved) { - JNIEnv *jniEnv = NULL; - //得到当前的jvm环境指针 - if ((*vm)->GetEnv(vm, (void **) &jniEnv, JNI_VERSION_1_4) != JNI_OK) { - return -1; - } - //初始化全局的jvm函数指针 - (*jniEnv)->GetJavaVM(jniEnv, &g_JavaVM); - //得到native函数的定义类 - jclass clazz = (*jniEnv)->FindClass(jniEnv, "cn/rrg/mfkey/NativeMfKey32"); - if (clazz == NULL) { - return -1; - } - //构建和初始化函数结构体,分别是java层的函数名称,签名,对应的函数指针 - JNINativeMethod methods[] = { - {"startExecute", "(Ljava/lang/String;)I", (void *) startExecute}, - {"isExecuting", "()Z", (void *) isExecuting}, - {"stopExecute", "()V", (void *) stopExecute}, - {"decrypt4IntParams", "(IIIIIII)Ljava/lang/String;", (void *) decrypt4Ints}, - {"decrypt4StrParams", "(Ljava/lang/String;" - "Ljava/lang/String;" - "Ljava/lang/String;" - "Ljava/lang/String;" - "Ljava/lang/String;" - "Ljava/lang/String;" - "Ljava/lang/String;)" - "Ljava/lang/String;", (void *) decrypt4Strs} - }; - //注册函数 - if ((*jniEnv)->RegisterNatives(jniEnv, clazz, methods, sizeof(methods) / sizeof(methods[0])) != - JNI_OK) { - return -1; - } - //最后一定要返回jni的版本。 - return JNI_VERSION_1_4; -} diff --git a/mfkey_32_64/src/main/cpp/mfkey64.c b/mfkey_32_64/src/main/cpp/mfkey64.c deleted file mode 100644 index 5a6603ea..00000000 --- a/mfkey_32_64/src/main/cpp/mfkey64.c +++ /dev/null @@ -1,186 +0,0 @@ -#include -#include -#include -#include -#include -#include -#include "crapto1.h" -#include "tools.h" -#include "util_posix.h" - -static volatile bool isRunning = false; -static volatile bool stop_label = false; - -int main64(int argc, char *argv[]) { - uint32_t uid; // serial numDber - uint32_t nt; // tag challenge - uint32_t nr_enc; // encrypted reader challenge - uint32_t ar_enc; // encrypted reader response - uint32_t at_enc; // encrypted tag response - uint64_t key = 0; // recovered key - struct Crypto1State *revstate; - uint32_t ks2; // keystream used to encrypt reader response - uint32_t ks3; // keystream used to encrypt tag response - - printf("MIFARE Classic key recovery - based on 64 bits of keystream\n"); - printf("Recover key from only one complete authentication!\n\n"); - - if (argc < 6) { - printf(" syntax: %s <{nr}> <{ar}> <{at}> [enc] [enc...]\n\n", argv[0]); - return 1; - } - - int encc = argc - 6; - int enclen[encc]; - uint8_t enc[encc][120]; - - sscanf(argv[1], "%x", &uid); - sscanf(argv[2], "%x", &nt); - sscanf(argv[3], "%x", &nr_enc); - sscanf(argv[4], "%x", &ar_enc); - sscanf(argv[5], "%x", &at_enc); - for (int i = 0; i < encc; i++) { - enclen[i] = strlen(argv[i + 6]) / 2; - for (int i2 = 0; i2 < enclen[i]; i2++) { - sscanf(argv[i + 6] + i2 * 2, "%2x", (unsigned int *) &enc[i][i2]); - } - } - - printf("Recovering key for:\n"); - printf(" uid: %08x\n", uid); - printf(" nt: %08x\n", nt); - printf(" {nr}: %08x\n", nr_enc); - printf(" {ar}: %08x\n", ar_enc); - printf(" {at}: %08x\n", at_enc); - for (int i = 0; i < encc; i++) { - printf("{enc%d}: ", i); - for (int i2 = 0; i2 < enclen[i]; i2++) { - printf("%02x", enc[i][i2]); - } - printf("\n"); - } - - printf("\nLFSR successors of the tag challenge:\n"); - printf(" nt' : %08x\n", prng_successor(nt, 64)); - printf(" nt'': %08x\n", prng_successor(nt, 96)); - - // Extract the keystream from the messages - ks2 = ar_enc ^ prng_successor(nt, 64); - ks3 = at_enc ^ prng_successor(nt, 96); - - uint64_t start_time = msclock(); - revstate = lfsr_recovery64(ks2, ks3); - uint64_t time_spent = msclock() - start_time; - printf("Time spent in lfsr_recovery64(): %1.2f seconds\n", (float) time_spent / 1000.0); - printf("\nKeystream used to generate {ar} and {at}:\n"); - printf(" ks2: %08x\n", ks2); - printf(" ks3: %08x\n", ks3); - - // Decrypting communication using keystream if presented - if (argc > 6) { - printf("\nDecrypted communication:\n"); - uint8_t ks4; - int rollb = 0; - for (int i = 0; i < encc; i++) { - printf("{dec%d}: ", i); - for (int i2 = 0; i2 < enclen[i]; i2++) { - ks4 = crypto1_byte(revstate, 0, 0); - printf("%02x", ks4 ^ enc[i][i2]); - rollb += 1; - } - printf("\n"); - } - for (int i = 0; i < rollb; i++) { - lfsr_rollback_byte(revstate, 0, 0); - } - } - - lfsr_rollback_word(revstate, 0, 0); - lfsr_rollback_word(revstate, 0, 0); - lfsr_rollback_word(revstate, nr_enc, 1); - lfsr_rollback_word(revstate, uid ^ nt, 0); - crypto1_get_lfsr(revstate, &key); - crypto1_destroy(revstate); - - printf("\nFound Key: [%012" PRIx64"]\n\n", key); - -} - -/* - * 执行命令! - * */ -jint startExecute(JNIEnv *env, jobject instance, jstring command_) { - //初始化JNIENV,这是必须的! - JNIEnv *tmpJniEnv = getJniEnv(); - //jboolean类型,控制是否为拷贝 - jboolean isCopy = 1; - const char *command = (*tmpJniEnv)->GetStringUTFChars(tmpJniEnv, command_, &isCopy); - //解析从JAVA端传入的命令 - CMD *cmd = parse_command_line(command); - if (cmd->len < 2) { - main64(0, cmd->cmd); - return EXIT_FAILURE; - } - //释放内存 - (*tmpJniEnv)->ReleaseStringUTFChars(tmpJniEnv, command_, command); - recovery_getopt_opt(); - isRunning = true; - stop_label = false; - printf("\n------------Begin------------\n"); - //TODO 记录开始执行的时间戳! - time_t start_time = time(NULL); - int ret = main64(cmd->len, cmd->cmd); - time_t end_time = time(NULL); - printf("\nINFO: execute time(s): %lf\n", difftime(end_time, start_time)); - printf("\n------------End------------\n"); - isRunning = false; - stop_label = false; - free_command_line(cmd); - return ret; -} - -/* - * 停止mfcuk - * */ -void stopExecute(JNIEnv *env, jobject instance) { - stop_label = true; -} - -/* - * 是否在执行当中 - * */ -jboolean isExecuting(JNIEnv *env, jobject instance) { - return (jboolean) isRunning; -} - -/* - * jvm加载so时的映射回调 - * */ -JNIEXPORT jint JNI_OnLoad(JavaVM *vm, void *reserved) { - - JNIEnv *jniEnv = NULL; -//得到当前的jvm环境指针 - if ((*vm)->GetEnv(vm, (void **) &jniEnv, JNI_VERSION_1_4) != JNI_OK) { - return -1; - } -//初始化全局的jvm函数指针 - (*jniEnv)->GetJavaVM(jniEnv, &g_JavaVM); -//得到native函数的定义类 - jclass clazz = (*jniEnv)->FindClass(jniEnv, "cn/rrg/mfkey/NativeMfKey64"); - if (clazz == NULL) { - return -1; - } -//构建和初始化函数结构体,分别是java层的函数名称,签名,对应的函数指针 - JNINativeMethod methods[] = { - {"startExecute", "(Ljava/lang/String;)I", (void *) startExecute}, - {"isExecuting", "()Z", (void *) isExecuting}, - {"stopExecute", "()V", (void *) stopExecute} - }; -//注册函数 - if ((*jniEnv)->RegisterNatives(jniEnv, clazz, methods, sizeof(methods) / sizeof(methods[0])) != - JNI_OK) { - return -1; - } -//最后一定要返回jni的版本。 - return JNI_VERSION_1_4; -} \ No newline at end of file diff --git a/mfkey_32_64/src/main/cpp/mifare.h b/mfkey_32_64/src/main/cpp/mifare.h deleted file mode 100644 index 2ab7e374..00000000 --- a/mfkey_32_64/src/main/cpp/mifare.h +++ /dev/null @@ -1,153 +0,0 @@ -//----------------------------------------------------------------------------- -// (c) 2012 Roel Verdult -// -// This code is licensed to you under the terms of the GNU GPL, version 2 or, -// at your option, any later version. See the LICENSE.txt file for the text of -// the license. -//----------------------------------------------------------------------------- -// MIFARE type prototyping -//----------------------------------------------------------------------------- - -#ifndef _MIFARE_H_ -#define _MIFARE_H_ - -#include "common.h" - -//----------------------------------------------------------------------------- -// ISO 14443A -//----------------------------------------------------------------------------- -typedef struct { - byte_t uid[10]; - byte_t uidlen; - byte_t atqa[2]; - byte_t sak; - byte_t ats_len; - byte_t ats[256]; -} __attribute__((__packed__)) iso14a_card_select_t; - -typedef enum ISO14A_COMMAND { - ISO14A_CONNECT = (1 << 0), - ISO14A_NO_DISCONNECT = (1 << 1), - ISO14A_APDU = (1 << 2), - ISO14A_RAW = (1 << 3), - ISO14A_REQUEST_TRIGGER = (1 << 4), - ISO14A_APPEND_CRC = (1 << 5), - ISO14A_SET_TIMEOUT = (1 << 6), - ISO14A_NO_SELECT = (1 << 7), - ISO14A_TOPAZMODE = (1 << 8), - ISO14A_NO_RATS = (1 << 9) -} iso14a_command_t; - -typedef struct { - uint8_t* response; - size_t response_n; - uint8_t* modulation; - size_t modulation_n; - uint32_t ProxToAirDuration; -} tag_response_info_t; -//----------------------------------------------------------------------------- -// ISO 14443B -//----------------------------------------------------------------------------- -typedef struct { - byte_t uid[10]; - byte_t uidlen; - byte_t atqb[7]; - byte_t chipid; - byte_t cid; -} __attribute__((__packed__)) iso14b_card_select_t; - -typedef enum ISO14B_COMMAND { - ISO14B_CONNECT = (1 << 0), - ISO14B_DISCONNECT = (1 << 1), - ISO14B_APDU = (1 << 2), - ISO14B_RAW = (1 << 3), - ISO14B_REQUEST_TRIGGER = (1 << 4), - ISO14B_APPEND_CRC = (1 << 5), - ISO14B_SELECT_STD = (1 << 6), - ISO14B_SELECT_SR = (1 << 7) -} iso14b_command_t; - -typedef enum ISO15_COMMAND { - ISO15_CONNECT = (1 << 0), - ISO15_NO_DISCONNECT = (1 << 1), - ISO15_RAW = (1 << 2), - ISO15_APPEND_CRC = (1 << 3), - ISO15_HIGH_SPEED = (1 << 4), - ISO15_READ_RESPONSE = (1 << 5) -} iso15_command_t; - -//----------------------------------------------------------------------------- -// "hf 14a sim x", "hf mf sim x" attacks -//----------------------------------------------------------------------------- -typedef struct { - uint32_t cuid; - uint32_t nonce; - uint32_t ar; - uint32_t nr; - uint32_t at; - uint32_t nonce2; - uint32_t ar2; - uint32_t nr2; - uint8_t sector; - uint8_t keytype; - enum { - EMPTY, - FIRST, - SECOND, - } state; -} nonces_t; - -//----------------------------------------------------------------------------- -// ISO 7618 Smart Card -//----------------------------------------------------------------------------- -typedef struct { - uint8_t atr_len; - uint8_t atr[30]; -} __attribute__((__packed__)) smart_card_atr_t; - -typedef enum SMARTCARD_COMMAND { - SC_CONNECT = (1 << 0), - SC_NO_DISCONNECT = (1 << 1), - SC_RAW = (1 << 2), - SC_NO_SELECT = (1 << 3) -} smartcard_command_t; - -//----------------------------------------------------------------------------- -// FeliCa -//----------------------------------------------------------------------------- -// IDm = ID manufacturer -// mc = manufactureCode -// mc1 mc2 u1 u2 u3 u4 u5 u6 -// PMm = Product manufacturer -// icCode = -// ic1 = ROM -// ic2 = IC -// maximum response time = -// B3(request service) -// B4(request response) -// B5(authenticate) -// B6(read) -// B7(write) -// B8() - -// ServiceCode 2bytes (access-rights) -// FileSystem = 1 Block = 16 bytes -typedef struct { - uint8_t IDm[8]; - uint8_t code[2]; - uint8_t uid[6]; - uint8_t PMm[8]; - uint8_t iccode[2]; - uint8_t mrt[6]; - uint8_t servicecode[2]; -} __attribute__((__packed__)) felica_card_select_t; - -typedef enum FELICA_COMMAND { - FELICA_CONNECT = (1 << 0), - FELICA_NO_DISCONNECT = (1 << 1), - FELICA_RAW = (1 << 3), - FELICA_APPEND_CRC = (1 << 5), - FELICA_NO_SELECT = (1 << 6), -} felica_command_t; - -#endif // _MIFARE_H_ diff --git a/mfkey_32_64/src/main/cpp/parity.c b/mfkey_32_64/src/main/cpp/parity.c deleted file mode 100644 index cd997ceb..00000000 --- a/mfkey_32_64/src/main/cpp/parity.c +++ /dev/null @@ -1,48 +0,0 @@ -//----------------------------------------------------------------------------- -// This code is licensed to you under the terms of the GNU GPL, version 2 or, -// at your option, any later version. See the LICENSE.txt file for the text of -// the license. -//----------------------------------------------------------------------------- -// parity functions (all defined in parity.h) -//----------------------------------------------------------------------------- -#include -#include - -const uint8_t OddByteParity[256] = { - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1 -}; - -const uint8_t EvenByteParity[256] = { - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1, - 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0 -}; - diff --git a/mfkey_32_64/src/main/cpp/parity.h b/mfkey_32_64/src/main/cpp/parity.h deleted file mode 100644 index fe1c2504..00000000 --- a/mfkey_32_64/src/main/cpp/parity.h +++ /dev/null @@ -1,61 +0,0 @@ -//----------------------------------------------------------------------------- -// This code is licensed to you under the terms of the GNU GPL, version 2 or, -// at your option, any later version. See the LICENSE.txt file for the text of -// the license. -//----------------------------------------------------------------------------- -// Parity functions -//----------------------------------------------------------------------------- - -// all functions defined in header file by purpose. Allows compiler optimizations. - -#ifndef __PARITY_H -#define __PARITY_H - -#ifdef __cplusplus -extern "C" { -#endif - -#include -#include - -extern const uint8_t OddByteParity[256]; - - -static inline bool oddparity8(const uint8_t x) { - return OddByteParity[x]; -} - - -static inline bool evenparity8(const uint8_t x) { - return !OddByteParity[x]; -} - - -static inline bool evenparity32(uint32_t x) -{ -#if !defined __GNUC__ - x ^= x >> 16; - x ^= x >> 8; - return evenparity8(x); -#else - return __builtin_parity(x); -#endif -} - - -static inline bool oddparity32(uint32_t x) -{ -#if !defined __GNUC__ - x ^= x >> 16; - x ^= x >> 8; - return oddparity8(x); -#else - return !__builtin_parity(x); -#endif -} - -#ifdef __cplusplus -} -#endif - -#endif /* __PARITY_H */ diff --git a/mfkey_32_64/src/main/cpp/tools.c b/mfkey_32_64/src/main/cpp/tools.c deleted file mode 100644 index 67585bc1..00000000 --- a/mfkey_32_64/src/main/cpp/tools.c +++ /dev/null @@ -1,105 +0,0 @@ -// -// Created by DXL on 2017/9/1. -// - -//including header -#include -#include -#include "stdbool.h" - -//当前线程是否添加的标志位 -static bool g_IsAttach; - -//TODO 环境变量获取函数 -JNIEnv *getJniEnv() { - JNIEnv *currentThreadEnv; - g_IsAttach = false; - if ((*g_JavaVM)->GetEnv(g_JavaVM, (void **) ¤tThreadEnv, JNI_VERSION_1_4) != JNI_OK) { - LOGE("Get Env Fail!"); - if ((*g_JavaVM)->AttachCurrentThread(g_JavaVM, ¤tThreadEnv, NULL) != JNI_OK) { - LOGE("Attach the current thread Fail!"); - g_IsAttach = false; - return NULL; - } else { - g_IsAttach = true; - LOGE("Attach the current thread Success!"); - return currentThreadEnv; - } - } else { - g_IsAttach = false; - //LOGE("Get Env Success!"); - return currentThreadEnv; - } -} - -//解绑线程env -void deatchThread() { - if (g_IsAttach) { - LOGD("线程解绑成功!"); - (*g_JavaVM)->DetachCurrentThread(g_JavaVM); - } -} - -//TODO 命令行解析 -CMD *parse_command_line(const char *commandStr) { - //一个指针,指向传进来的命令字符串(const修饰的,我们需要复刻一份!) - CMD *cmd = (CMD *) malloc(sizeof(CMD)); - if (!cmd) { - LOGD("申请空间失败!"); - return NULL; - } - //拷贝字符串到堆空间! - char *pTmp = strdup(commandStr); - LOGD("拷贝参数字符串到临时堆!"); - //返回的结果!先初始化为20个空间 - int size = 20; - cmd->cmd = (char **) malloc(size * sizeof(char **)); - if (cmd->cmd) { - LOGD("申请参数空间成功!"); - } else { - LOGD("申请空间失败!"); - } - //进行截取 - char *pStr = strtok(pTmp, " "); - LOGD("第0次截取完成: %s", pStr); - //给结果数组进行下标为0的第一次初始化 - cmd->cmd[0] = pStr; - //局部变量用于储存解析到的命令个数,下标移动为一 - int count = 1; - //需要截取命令参数,以空格为限定符 - for (; pStr != NULL; ++count) { - //如果容量不够,则扩容! - if (count == (size - 1)) { - size += 20; - cmd->cmd = (char **) realloc(cmd->cmd, size * sizeof(char **)); - LOGD("超过初始容量,自动扩容!"); - } - pStr = strtok(NULL, " "); - if (pStr) { - cmd->cmd[count] = pStr; - LOGD("第%d次截取完成: %s", count, pStr); - } - } - cmd->len = (count - 1); - LOGD("解析函数执行完成!"); - return cmd; -} - -//内存释放 -void free_command_line(CMD *cmd) { - //二级指针需要逐层释放! - LOGD("释放命令行字符串二级引用!"); - free(cmd->cmd[0]); - LOGD("释放命令行一级引用!"); - free(cmd->cmd); - LOGD("释放结构体内存"); - free(cmd); -} - -//重置getopt函数的参数 -void recovery_getopt_opt() { - optind = 0; - opterr = 1; - optopt = 0; - optarg = NULL; -} \ No newline at end of file diff --git a/mfkey_32_64/src/main/cpp/tools.h b/mfkey_32_64/src/main/cpp/tools.h deleted file mode 100644 index c52a414e..00000000 --- a/mfkey_32_64/src/main/cpp/tools.h +++ /dev/null @@ -1,44 +0,0 @@ -// -// Created by dell on 2017/9/1. -// - -#ifndef DXL_TOOLS_H -#define DXL_TOOLS_H - -#include -#include -#include -#include - -//JNI LOG -#define TAG "DXL BlUESPP_PN532" -#define LOGV(...) __android_log_print(ANDROID_LOG_VERBOSE,TAG,__VA_ARGS__) -#define LOGD(...) __android_log_print(ANDROID_LOG_DEBUG,TAG,__VA_ARGS__) -#define LOGI(...) __android_log_print(ANDROID_LOG_INFO,TAG,__VA_ARGS__) -#define LOGW(...) __android_log_print(ANDROID_LOG_WARN,TAG,__VA_ARGS__) -#define LOGE(...) __android_log_print(ANDROID_LOG_ERROR,TAG,__VA_ARGS__) - -//全局的环境变量定义 -JavaVM *g_JavaVM; - -//线程环境指针获取函数 -JNIEnv *getJniEnv(); - -//子线程释放函数,必须是native层创建的线程才可以调用 -void deatchThread(); - -typedef struct { - char **cmd; - int len; -} CMD; - -//命令行解析函数 -CMD *parse_command_line(const char *commandStr); - -//解析结果释放函数! -void free_command_line(CMD *); - -//重置getopt函数 -void recovery_getopt_opt(); - -#endif //DXL_TOOLS_H \ No newline at end of file diff --git a/mfkey_32_64/src/main/cpp/util_posix.c b/mfkey_32_64/src/main/cpp/util_posix.c deleted file mode 100644 index 7704e9d4..00000000 --- a/mfkey_32_64/src/main/cpp/util_posix.c +++ /dev/null @@ -1,136 +0,0 @@ -//----------------------------------------------------------------------------- -// Copyright (C) 2010 iZsh -// -// This code is licensed to you under the terms of the GNU GPL, version 2 or, -// at your option, any later version. See the LICENSE.txt file for the text of -// the license. -//----------------------------------------------------------------------------- -// utilities requiring Posix library functions -//----------------------------------------------------------------------------- - -#if !defined(_WIN32) -#define _POSIX_C_SOURCE 199309L // need nanosleep() -#else -#include -#endif - -#include "util_posix.h" -#include -#include - - -// Timer functions -#if !defined (_WIN32) -#include - -static void nsleep(uint64_t n) { - struct timespec timeout; - timeout.tv_sec = n/1000000000; - timeout.tv_nsec = n%1000000000; - while (nanosleep(&timeout, &timeout) && errno == EINTR); -} - -void msleep(uint32_t n) { - nsleep(1000000 * (uint64_t)n); -} -#endif // _WIN32 - -#ifdef __APPLE__ - -#ifndef CLOCK_MONOTONIC - #define CLOCK_MONOTONIC (1) -#endif -#ifndef CLOCK_REALTIME - #define CLOCK_REALTIME (2) -#endif - - #include - #include - #include - #include - - /* clock_gettime is not implemented on OSX prior to 10.12 */ - int _civet_clock_gettime(int clk_id, struct timespec *t); - - int _civet_clock_gettime(int clk_id, struct timespec *t) - { - memset(t, 0, sizeof(*t)); - if (clk_id == CLOCK_REALTIME) { - struct timeval now; - int rv = gettimeofday(&now, NULL); - if (rv) { - return rv; - } - t->tv_sec = now.tv_sec; - t->tv_nsec = now.tv_usec * 1000; - return 0; - - } else if (clk_id == CLOCK_MONOTONIC) { - static uint64_t clock_start_time = 0; - static mach_timebase_info_data_t timebase_info = {0, 0}; - - uint64_t now = mach_absolute_time(); - - if (clock_start_time == 0) { - - mach_timebase_info(&timebase_info); - clock_start_time = now; - } - - now = (uint64_t)((double)(now - clock_start_time) - * (double)timebase_info.numer - / (double)timebase_info.denom); - - t->tv_sec = now / 1000000000; - t->tv_nsec = now % 1000000000; - return 0; - } - return -1; // EINVAL - Clock ID is unknown - } - - /* if clock_gettime is declared, then __CLOCK_AVAILABILITY will be defined */ - #ifdef __CLOCK_AVAILABILITY - /* If we compiled with Mac OSX 10.12 or later, then clock_gettime will be declared - * but it may be NULL at runtime. So we need to check before using it. */ - int _civet_safe_clock_gettime(int clk_id, struct timespec *t); - - int _civet_safe_clock_gettime(int clk_id, struct timespec *t) { - if( clock_gettime ) { - return clock_gettime(clk_id, t); - } - return _civet_clock_gettime(clk_id, t); - } - #define clock_gettime _civet_safe_clock_gettime - #else - #define clock_gettime _civet_clock_gettime - #endif - -#endif - - -// a milliseconds timer for performance measurement -uint64_t msclock(void) { -#if defined(_WIN32) - #include - - // WORKAROUND FOR MinGW (some versions - use if normal code does not compile) - // It has no _ftime_s and needs explicit inclusion of timeb.h - #include - struct _timeb t; - _ftime(&t); - return 1000 * (uint64_t)t.time + t.millitm; - -// NORMAL CODE (use _ftime_s) - //struct _timeb t; - //if (_ftime_s(&t)) { - // return 0; - //} else { - // return 1000 * t.time + t.millitm; - //} -#else - struct timespec t; - clock_gettime(CLOCK_MONOTONIC, &t); - return (t.tv_sec * 1000 + t.tv_nsec / 1000000); -#endif -} - diff --git a/mfkey_32_64/src/main/cpp/util_posix.h b/mfkey_32_64/src/main/cpp/util_posix.h deleted file mode 100644 index dcf9d99a..00000000 --- a/mfkey_32_64/src/main/cpp/util_posix.h +++ /dev/null @@ -1,26 +0,0 @@ -//----------------------------------------------------------------------------- -// Copyright (C) 2010 iZsh -// -// This code is licensed to you under the terms of the GNU GPL, version 2 or, -// at your option, any later version. See the LICENSE.txt file for the text of -// the license. -//----------------------------------------------------------------------------- -// utilities requiring Posix library functions -//----------------------------------------------------------------------------- - -#ifndef UTIL_POSIX_H__ -#define UTIL_POSIX_H__ - -#include - -#ifdef _WIN32 -# include -# define sleep(n) Sleep(1000 *(n)) -# define msleep(n) Sleep((n)) -#else -extern void msleep(uint32_t n); // sleep n milliseconds -#endif // _WIN32 - -extern uint64_t msclock(); // a milliseconds clock - -#endif diff --git a/mfkey_32_64/src/main/java/cn/rrg/mfkey/NativeMfKey.java b/mfkey_32_64/src/main/java/cn/rrg/mfkey/NativeMfKey.java deleted file mode 100644 index 058b05ce..00000000 --- a/mfkey_32_64/src/main/java/cn/rrg/mfkey/NativeMfKey.java +++ /dev/null @@ -1,30 +0,0 @@ -package cn.rrg.mfkey; - -import cn.rrg.console.define.ICommandTools; - -public class NativeMfKey - implements ICommandTools { - - private ICommandTools cmd; - - public NativeMfKey(boolean is64Mode) { - //代理模式?,底层持有或者32或者64处理的实现类! - if (is64Mode) cmd = new NativeMfKey64(); - else cmd = new NativeMfKey32(); - } - - @Override - public int startExecute(String cmd) { - return this.cmd.startExecute(cmd); - } - - @Override - public boolean isExecuting() { - return this.cmd.isExecuting(); - } - - @Override - public void stopExecute() { - this.cmd.stopExecute(); - } -} diff --git a/mfkey_32_64/src/main/java/cn/rrg/mfkey/NativeMfKey32.java b/mfkey_32_64/src/main/java/cn/rrg/mfkey/NativeMfKey32.java deleted file mode 100644 index ad129c8d..00000000 --- a/mfkey_32_64/src/main/java/cn/rrg/mfkey/NativeMfKey32.java +++ /dev/null @@ -1,47 +0,0 @@ -package cn.rrg.mfkey; - -import cn.rrg.console.define.ICommandTools; - -public class NativeMfKey32 implements ICommandTools { - - static { - System.loadLibrary("mfkey32"); - } - - /** - * 单独实现一个原生函数,直接做计算操作,不走控制台实现! - * - * @return key - */ - public native String decrypt4IntParams( - int uid, /* 计算的UID,整形类型 */ - int nt0, - int nr0, - int ar0, - int nt1, - int nr1, - int ar1 - ); - - /* - * 参数重写,传入的参数进行重新转换之类的! - * */ - public native String decrypt4StrParams( - String uid, /* 计算的UID,16HEX字符类型 */ - String nt0, - String nr0, - String ar0, - String nt1, - String nr1, - String ar1 - ); - - @Override - public native int startExecute(String cmd); - - @Override - public native boolean isExecuting(); - - @Override - public native void stopExecute(); -} diff --git a/mfkey_32_64/src/main/java/cn/rrg/mfkey/NativeMfKey64.java b/mfkey_32_64/src/main/java/cn/rrg/mfkey/NativeMfKey64.java deleted file mode 100644 index 94109a44..00000000 --- a/mfkey_32_64/src/main/java/cn/rrg/mfkey/NativeMfKey64.java +++ /dev/null @@ -1,18 +0,0 @@ -package cn.rrg.mfkey; - -import cn.rrg.console.define.ICommandTools; - -public class NativeMfKey64 implements ICommandTools { - static { - System.loadLibrary("mfkey64"); - } - - @Override - public native int startExecute(String cmd); - - @Override - public native boolean isExecuting(); - - @Override - public native void stopExecute(); -} diff --git a/mfkey_32_64/src/main/java/cn/rrg/mfkey/Nonce32.java b/mfkey_32_64/src/main/java/cn/rrg/mfkey/Nonce32.java deleted file mode 100644 index 5aec200d..00000000 --- a/mfkey_32_64/src/main/java/cn/rrg/mfkey/Nonce32.java +++ /dev/null @@ -1,50 +0,0 @@ -package cn.rrg.mfkey; - -/** - * 32长度随机数恢复! - * 部分功能链式调用! - * - * @author DXL - */ -public class Nonce32 { - private int nt; - private int nr; - private int ar; - - public Nonce32() { - //空构造! - } - - public Nonce32(int nt, int nr, int ar) { - this.nt = nt; - this.nr = nr; - this.ar = ar; - } - - public int getNt() { - return nt; - } - - public Nonce32 setNt(int nt) { - this.nt = nt; - return this; - } - - public int getNr() { - return nr; - } - - public Nonce32 setNr(int nr) { - this.nr = nr; - return this; - } - - public int getAr() { - return ar; - } - - public Nonce32 setAr(int ar) { - this.ar = ar; - return this; - } -} diff --git a/mfkey_32_64/src/main/java/cn/rrg/mfkey/Nonce64.java b/mfkey_32_64/src/main/java/cn/rrg/mfkey/Nonce64.java deleted file mode 100644 index 4794a88a..00000000 --- a/mfkey_32_64/src/main/java/cn/rrg/mfkey/Nonce64.java +++ /dev/null @@ -1,29 +0,0 @@ -package cn.rrg.mfkey; - -/** - * @author DXL - * Nonce64类比Nonce32类多了几个属性变量, - * 其他的一致相同,此时可以继承复用! - */ -public class Nonce64 extends Nonce32 { - private int at; - private int[] enc; - - public int getAt() { - return at; - } - - public Nonce64 setAt(int at) { - this.at = at; - return this; - } - - public int[] getEnc() { - return enc; - } - - public Nonce64 setEnc(int[] enc) { - this.enc = enc; - return this; - } -} diff --git a/mfkey_32_64/src/main/res/values/strings.xml b/mfkey_32_64/src/main/res/values/strings.xml deleted file mode 100644 index e73bf4f6..00000000 --- a/mfkey_32_64/src/main/res/values/strings.xml +++ /dev/null @@ -1,3 +0,0 @@ - - mfkey -