1 /* SPDX-License-Identifier: GPL-2.0 */ << 2 /* 1 /* 3 * BSD Process Accounting for Linux - Definit 2 * BSD Process Accounting for Linux - Definitions 4 * 3 * 5 * Author: Marco van Wieringen (mvw@planets.e 4 * Author: Marco van Wieringen (mvw@planets.elm.net) 6 * 5 * 7 * This header file contains the definitions 6 * This header file contains the definitions needed to implement 8 * BSD-style process accounting. The kernel a 7 * BSD-style process accounting. The kernel accounting code and all 9 * user-level programs that try to do somethi 8 * user-level programs that try to do something useful with the 10 * process accounting log must include this f 9 * process accounting log must include this file. 11 * 10 * 12 * Copyright (C) 1995 - 1997 Marco van Wierin 11 * Copyright (C) 1995 - 1997 Marco van Wieringen - ELM Consultancy B.V. 13 * 12 * 14 */ 13 */ 15 #ifndef _LINUX_ACCT_H 14 #ifndef _LINUX_ACCT_H 16 #define _LINUX_ACCT_H 15 #define _LINUX_ACCT_H 17 16 18 #include <uapi/linux/acct.h> 17 #include <uapi/linux/acct.h> 19 18 20 19 21 20 22 #ifdef CONFIG_BSD_PROCESS_ACCT 21 #ifdef CONFIG_BSD_PROCESS_ACCT >> 22 struct vfsmount; >> 23 struct super_block; >> 24 struct pacct_struct; 23 struct pid_namespace; 25 struct pid_namespace; >> 26 extern int acct_parm[]; /* for sysctl */ 24 extern void acct_collect(long exitcode, int gr 27 extern void acct_collect(long exitcode, int group_dead); 25 extern void acct_process(void); 28 extern void acct_process(void); 26 extern void acct_exit_ns(struct pid_namespace 29 extern void acct_exit_ns(struct pid_namespace *); 27 #else 30 #else 28 #define acct_collect(x,y) do { } while ( 31 #define acct_collect(x,y) do { } while (0) 29 #define acct_process() do { } while ( 32 #define acct_process() do { } while (0) 30 #define acct_exit_ns(ns) do { } while ( 33 #define acct_exit_ns(ns) do { } while (0) 31 #endif 34 #endif 32 35 33 /* 36 /* 34 * ACCT_VERSION numbers as yet defined: 37 * ACCT_VERSION numbers as yet defined: 35 * 0: old format (until 2.6.7) with 16 bit uid 38 * 0: old format (until 2.6.7) with 16 bit uid/gid 36 * 1: extended variant (binary compatible on M 39 * 1: extended variant (binary compatible on M68K) 37 * 2: extended variant (binary compatible on e 40 * 2: extended variant (binary compatible on everything except M68K) 38 * 3: new binary incompatible format (64 bytes 41 * 3: new binary incompatible format (64 bytes) 39 * 4: new binary incompatible format (128 byte 42 * 4: new binary incompatible format (128 bytes) 40 * 5: new binary incompatible format (128 byte 43 * 5: new binary incompatible format (128 bytes, second half) 41 * 44 * 42 */ 45 */ 43 46 44 #undef ACCT_VERSION 47 #undef ACCT_VERSION 45 #undef AHZ 48 #undef AHZ 46 49 47 #ifdef CONFIG_BSD_PROCESS_ACCT_V3 50 #ifdef CONFIG_BSD_PROCESS_ACCT_V3 48 #define ACCT_VERSION 3 51 #define ACCT_VERSION 3 49 #define AHZ 100 52 #define AHZ 100 50 typedef struct acct_v3 acct_t; 53 typedef struct acct_v3 acct_t; 51 #else 54 #else 52 #ifdef CONFIG_M68K 55 #ifdef CONFIG_M68K 53 #define ACCT_VERSION 1 56 #define ACCT_VERSION 1 54 #else 57 #else 55 #define ACCT_VERSION 2 58 #define ACCT_VERSION 2 56 #endif 59 #endif 57 #define AHZ (USER_HZ) 60 #define AHZ (USER_HZ) 58 typedef struct acct acct_t; 61 typedef struct acct acct_t; 59 #endif 62 #endif 60 63 61 #include <linux/jiffies.h> 64 #include <linux/jiffies.h> 62 /* 65 /* 63 * Yet another set of HZ to *HZ helper functio 66 * Yet another set of HZ to *HZ helper functions. 64 * See <linux/jiffies.h> for the original. 67 * See <linux/jiffies.h> for the original. 65 */ 68 */ 66 69 67 static inline u32 jiffies_to_AHZ(unsigned long 70 static inline u32 jiffies_to_AHZ(unsigned long x) 68 { 71 { 69 #if (TICK_NSEC % (NSEC_PER_SEC / AHZ)) == 0 72 #if (TICK_NSEC % (NSEC_PER_SEC / AHZ)) == 0 70 # if HZ < AHZ 73 # if HZ < AHZ 71 return x * (AHZ / HZ); 74 return x * (AHZ / HZ); 72 # else 75 # else 73 return x / (HZ / AHZ); 76 return x / (HZ / AHZ); 74 # endif 77 # endif 75 #else 78 #else 76 u64 tmp = (u64)x * TICK_NSEC; 79 u64 tmp = (u64)x * TICK_NSEC; 77 do_div(tmp, (NSEC_PER_SEC / AHZ)); 80 do_div(tmp, (NSEC_PER_SEC / AHZ)); 78 return (long)tmp; 81 return (long)tmp; 79 #endif 82 #endif 80 } 83 } 81 84 82 static inline u64 nsec_to_AHZ(u64 x) 85 static inline u64 nsec_to_AHZ(u64 x) 83 { 86 { 84 #if (NSEC_PER_SEC % AHZ) == 0 87 #if (NSEC_PER_SEC % AHZ) == 0 85 do_div(x, (NSEC_PER_SEC / AHZ)); 88 do_div(x, (NSEC_PER_SEC / AHZ)); 86 #elif (AHZ % 512) == 0 89 #elif (AHZ % 512) == 0 87 x *= AHZ/512; 90 x *= AHZ/512; 88 do_div(x, (NSEC_PER_SEC / 512)); 91 do_div(x, (NSEC_PER_SEC / 512)); 89 #else 92 #else 90 /* 93 /* 91 * max relative error 5.7e-8 (1.8s per 94 * max relative error 5.7e-8 (1.8s per year) for AHZ <= 1024, 92 * overflow after 64.99 years. 95 * overflow after 64.99 years. 93 * exact for AHZ=60, 72, 90, 120, 144, 96 * exact for AHZ=60, 72, 90, 120, 144, 180, 300, 600, 900, ... 94 */ 97 */ 95 x *= 9; 98 x *= 9; 96 do_div(x, (unsigned long)((9ull * NSEC 99 do_div(x, (unsigned long)((9ull * NSEC_PER_SEC + (AHZ/2)) 97 / AHZ)); 100 / AHZ)); 98 #endif 101 #endif 99 return x; 102 return x; 100 } 103 } 101 104 102 #endif /* _LINUX_ACCT_H */ 105 #endif /* _LINUX_ACCT_H */ 103 106
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