| /kernel/linux/linux-5.10/drivers/net/fddi/skfp/ |
| D | smtdef.c | 50 #define DEFAULT_T_NON_OP TTS(1) 58 #define DEFAULT_TEST_DONE TTS(1) 59 #define DEFAULT_CHECK_POLL TTS(1) 65 #define DEFAULT_LCT_SHORT 1 73 static int set_min_max(int maxflag, u_long mib, u_long limit, u_long *oper); 93 smt->build_ring_map = 1 ; in smt_reset_defaults() 130 smc->mib.fddiESSPayload = 0 ; in smt_reset_defaults() 131 smc->mib.fddiESSOverhead = 0 ; in smt_reset_defaults() 132 smc->mib.fddiESSMaxTNeg = (u_long)(- MS2BCLK(25)) ; in smt_reset_defaults() 133 smc->mib.fddiESSMinSegmentSize = 1 ; in smt_reset_defaults() [all …]
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| D | pcmplc.c | 71 #define GO_STATE(x) (mib->fddiPORTPCMState = (x)|AFLAG) 72 #define ACTIONS_DONE() (mib->fddiPORTPCMState &= ~AFLAG) 79 #define PC1_BREAK 1 142 #define PS_BIT3 1 235 struct fddi_mib_p *mib ; in pcm_init() local 239 mib = phy->mib ; in pcm_init() 240 mib->fddiPORTPCMState = ACTIONS(PC0_OFF) ; in pcm_init() 245 mib->fddiPORTMy_Type = (np == PS) ? TS : TM ; in pcm_init() 248 mib->fddiPORTMy_Type = (np == PA) ? TA : in pcm_init() 252 mib->fddiPORTMy_Type = TM ; in pcm_init() [all …]
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| D | smt.c | 112 *(short *)(&smc->mib.m[MAC0].fddiMACSMTAddress.a[0]) in is_my_addr() 114 *(short *)(&smc->mib.m[MAC0].fddiMACSMTAddress.a[2]) in is_my_addr() 116 *(short *)(&smc->mib.m[MAC0].fddiMACSMTAddress.a[4])) ; in is_my_addr() 154 smc->mib.m[MAC0].fddiMACSMTAddress = smc->hw.fddi_home_addr ; in smt_agent_init() 159 smc->mib.fddiSMTStationId.sid_oem[0] = 0 ; in smt_agent_init() 160 smc->mib.fddiSMTStationId.sid_oem[1] = 0 ; in smt_agent_init() 161 driver_get_bia(smc,&smc->mib.fddiSMTStationId.sid_node) ; in smt_agent_init() 163 smc->mib.fddiSMTStationId.sid_node.a[i] = in smt_agent_init() 164 bitrev8(smc->mib.fddiSMTStationId.sid_node.a[i]); in smt_agent_init() 166 smc->mib.fddiSMTManufacturerData[0] = in smt_agent_init() [all …]
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| D | cfm.c | 43 #define GO_STATE(x) (smc->mib.fddiSMTCF_State = (x)|AFLAG) 44 #define ACTIONS_DONE() (smc->mib.fddiSMTCF_State &= ~AFLAG) 76 #define CEM_PST_UP 1 97 smc->mib.fddiSMTCF_State = ACTIONS(SC0_ISOLATED) ; in cfm_init() 113 switch (phy->mib->fddiPORTMy_Type) { in selection_criteria() 222 smc->mib.fddiSMTCF_State & AFLAG ? "ACTIONS " : "", in cfm() 223 cfm_states[smc->mib.fddiSMTCF_State & ~AFLAG], in cfm() 225 state = smc->mib.fddiSMTCF_State ; in cfm() 228 } while (state != smc->mib.fddiSMTCF_State) ; in cfm() 235 if ( (smc->mib.fddiSMTCF_State == SC9_C_WRAP_A && in cfm() [all …]
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| /kernel/linux/linux-6.6/drivers/net/fddi/skfp/ |
| D | smtdef.c | 46 #define DEFAULT_T_NON_OP TTS(1) 54 #define DEFAULT_TEST_DONE TTS(1) 55 #define DEFAULT_CHECK_POLL TTS(1) 61 #define DEFAULT_LCT_SHORT 1 69 static int set_min_max(int maxflag, u_long mib, u_long limit, u_long *oper); 89 smt->build_ring_map = 1 ; in smt_reset_defaults() 126 smc->mib.fddiESSPayload = 0 ; in smt_reset_defaults() 127 smc->mib.fddiESSOverhead = 0 ; in smt_reset_defaults() 128 smc->mib.fddiESSMaxTNeg = (u_long)(- MS2BCLK(25)) ; in smt_reset_defaults() 129 smc->mib.fddiESSMinSegmentSize = 1 ; in smt_reset_defaults() [all …]
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| D | pcmplc.c | 67 #define GO_STATE(x) (mib->fddiPORTPCMState = (x)|AFLAG) 68 #define ACTIONS_DONE() (mib->fddiPORTPCMState &= ~AFLAG) 75 #define PC1_BREAK 1 138 #define PS_BIT3 1 231 struct fddi_mib_p *mib ; in pcm_init() local 235 mib = phy->mib ; in pcm_init() 236 mib->fddiPORTPCMState = ACTIONS(PC0_OFF) ; in pcm_init() 241 mib->fddiPORTMy_Type = (np == PS) ? TS : TM ; in pcm_init() 244 mib->fddiPORTMy_Type = (np == PA) ? TA : in pcm_init() 248 mib->fddiPORTMy_Type = TM ; in pcm_init() [all …]
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| D | smt.c | 112 *(short *)(&smc->mib.m[MAC0].fddiMACSMTAddress.a[0]) in is_my_addr() 114 *(short *)(&smc->mib.m[MAC0].fddiMACSMTAddress.a[2]) in is_my_addr() 116 *(short *)(&smc->mib.m[MAC0].fddiMACSMTAddress.a[4])) ; in is_my_addr() 154 smc->mib.m[MAC0].fddiMACSMTAddress = smc->hw.fddi_home_addr ; in smt_agent_init() 159 smc->mib.fddiSMTStationId.sid_oem[0] = 0 ; in smt_agent_init() 160 smc->mib.fddiSMTStationId.sid_oem[1] = 0 ; in smt_agent_init() 161 driver_get_bia(smc,&smc->mib.fddiSMTStationId.sid_node) ; in smt_agent_init() 163 smc->mib.fddiSMTStationId.sid_node.a[i] = in smt_agent_init() 164 bitrev8(smc->mib.fddiSMTStationId.sid_node.a[i]); in smt_agent_init() 166 smc->mib.fddiSMTManufacturerData[0] = in smt_agent_init() [all …]
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| D | cfm.c | 43 #define GO_STATE(x) (smc->mib.fddiSMTCF_State = (x)|AFLAG) 44 #define ACTIONS_DONE() (smc->mib.fddiSMTCF_State &= ~AFLAG) 76 #define CEM_PST_UP 1 97 smc->mib.fddiSMTCF_State = ACTIONS(SC0_ISOLATED) ; in cfm_init() 113 switch (phy->mib->fddiPORTMy_Type) { in selection_criteria() 222 smc->mib.fddiSMTCF_State & AFLAG ? "ACTIONS " : "", in cfm() 223 cfm_states[smc->mib.fddiSMTCF_State & ~AFLAG], in cfm() 225 state = smc->mib.fddiSMTCF_State ; in cfm() 228 } while (state != smc->mib.fddiSMTCF_State) ; in cfm() 235 if ( (smc->mib.fddiSMTCF_State == SC9_C_WRAP_A && in cfm() [all …]
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| /kernel/linux/linux-5.10/drivers/mtd/nand/raw/ |
| D | nand_ids.c | 18 * name, device ID, page size, chip size in MiB, eraseblock size, options 29 {"TC58NVG0S3E 1G 3.3V 8-bit", 31 SZ_2K, SZ_128, SZ_128K, 0, 8, 64, NAND_ECC_INFO(1, SZ_512), }, 58 LEGACY_ID_NAND("NAND 4MiB 5V 8-bit", 0x6B, 4, SZ_8K, SP_OPTIONS), 59 LEGACY_ID_NAND("NAND 4MiB 3,3V 8-bit", 0xE3, 4, SZ_8K, SP_OPTIONS), 60 LEGACY_ID_NAND("NAND 4MiB 3,3V 8-bit", 0xE5, 4, SZ_8K, SP_OPTIONS), 61 LEGACY_ID_NAND("NAND 8MiB 3,3V 8-bit", 0xD6, 8, SZ_8K, SP_OPTIONS), 62 LEGACY_ID_NAND("NAND 8MiB 3,3V 8-bit", 0xE6, 8, SZ_8K, SP_OPTIONS), 64 LEGACY_ID_NAND("NAND 16MiB 1,8V 8-bit", 0x33, 16, SZ_16K, SP_OPTIONS), 65 LEGACY_ID_NAND("NAND 16MiB 3,3V 8-bit", 0x73, 16, SZ_16K, SP_OPTIONS), [all …]
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| D | sm_common.c | 15 if (section > 1) in oob_sm_ooblayout_ecc() 19 oobregion->offset = ((section + 1) * 8) - 3; in oob_sm_ooblayout_ecc() 33 case 1: in oob_sm_ooblayout_free() 82 case 1: in oob_sm_small_ooblayout_free() 106 memset(&oob, -1, SM_OOB_SIZE); in sm_block_markbad() 129 LEGACY_ID_NAND("SmartMedia 2MiB 3,3V ROM", 0x5d, 2, SZ_8K, NAND_ROM), 130 LEGACY_ID_NAND("SmartMedia 4MiB 3,3V", 0xe3, 4, SZ_8K, 0), 131 LEGACY_ID_NAND("SmartMedia 4MiB 3,3/5V", 0xe5, 4, SZ_8K, 0), 132 LEGACY_ID_NAND("SmartMedia 4MiB 5V", 0x6b, 4, SZ_8K, 0), 133 LEGACY_ID_NAND("SmartMedia 4MiB 3,3V ROM", 0xd5, 4, SZ_8K, NAND_ROM), [all …]
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| /kernel/linux/linux-6.6/drivers/mtd/nand/raw/ |
| D | nand_ids.c | 18 * name, device ID, page size, chip size in MiB, eraseblock size, options 29 {"TC58NVG0S3E 1G 3.3V 8-bit", 31 SZ_2K, SZ_128, SZ_128K, 0, 8, 64, NAND_ECC_INFO(1, SZ_512), }, 68 LEGACY_ID_NAND("NAND 4MiB 5V 8-bit", 0x6B, 4, SZ_8K, SP_OPTIONS), 69 LEGACY_ID_NAND("NAND 4MiB 3,3V 8-bit", 0xE3, 4, SZ_8K, SP_OPTIONS), 70 LEGACY_ID_NAND("NAND 4MiB 3,3V 8-bit", 0xE5, 4, SZ_8K, SP_OPTIONS), 71 LEGACY_ID_NAND("NAND 8MiB 3,3V 8-bit", 0xD6, 8, SZ_8K, SP_OPTIONS), 72 LEGACY_ID_NAND("NAND 8MiB 3,3V 8-bit", 0xE6, 8, SZ_8K, SP_OPTIONS), 74 LEGACY_ID_NAND("NAND 16MiB 1,8V 8-bit", 0x33, 16, SZ_16K, SP_OPTIONS), 75 LEGACY_ID_NAND("NAND 16MiB 3,3V 8-bit", 0x73, 16, SZ_16K, SP_OPTIONS), [all …]
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| D | sm_common.c | 15 if (section > 1) in oob_sm_ooblayout_ecc() 19 oobregion->offset = ((section + 1) * 8) - 3; in oob_sm_ooblayout_ecc() 33 case 1: in oob_sm_ooblayout_free() 82 case 1: in oob_sm_small_ooblayout_free() 106 memset(&oob, -1, SM_OOB_SIZE); in sm_block_markbad() 129 LEGACY_ID_NAND("SmartMedia 2MiB 3,3V ROM", 0x5d, 2, SZ_8K, NAND_ROM), 130 LEGACY_ID_NAND("SmartMedia 4MiB 3,3V", 0xe3, 4, SZ_8K, 0), 131 LEGACY_ID_NAND("SmartMedia 4MiB 3,3/5V", 0xe5, 4, SZ_8K, 0), 132 LEGACY_ID_NAND("SmartMedia 4MiB 5V", 0x6b, 4, SZ_8K, 0), 133 LEGACY_ID_NAND("SmartMedia 4MiB 3,3V ROM", 0xd5, 4, SZ_8K, NAND_ROM), [all …]
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| /kernel/linux/linux-6.6/include/net/ |
| D | snmp.h | 4 * SNMP MIB entries for the IP subsystem. 10 * however need to collect the MIB statistics and export them 127 #define __SNMP_INC_STATS(mib, field) \ argument 128 __this_cpu_inc(mib->mibs[field]) 130 #define SNMP_INC_STATS_ATOMIC_LONG(mib, field) \ argument 131 atomic_long_inc(&mib->mibs[field]) 133 #define SNMP_INC_STATS(mib, field) \ argument 134 this_cpu_inc(mib->mibs[field]) 136 #define SNMP_DEC_STATS(mib, field) \ argument 137 this_cpu_dec(mib->mibs[field]) [all …]
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| /kernel/linux/linux-5.10/include/net/ |
| D | snmp.h | 4 * SNMP MIB entries for the IP subsystem. 10 * however need to collect the MIB statistics and export them 127 #define __SNMP_INC_STATS(mib, field) \ argument 128 __this_cpu_inc(mib->mibs[field]) 130 #define SNMP_INC_STATS_ATOMIC_LONG(mib, field) \ argument 131 atomic_long_inc(&mib->mibs[field]) 133 #define SNMP_INC_STATS(mib, field) \ argument 134 this_cpu_inc(mib->mibs[field]) 136 #define SNMP_DEC_STATS(mib, field) \ argument 137 this_cpu_dec(mib->mibs[field]) [all …]
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| /kernel/linux/linux-6.6/Documentation/driver-api/cxl/ |
| D | memory-devices.rst | 33 given range only decodes to 1 one Host Bridge, but that Host Bridge may in turn 50 "host":"cxl_host_bridge.1", 54 "host":"cxl_switch_uport.1", 61 "pmem_size":"256.00 MiB (268.44 MB)", 62 "ram_size":"256.00 MiB (268.44 MB)", 64 "numa_node":1, 65 "host":"cxl_mem.1" 73 "pmem_size":"256.00 MiB (268.44 MB)", 74 "ram_size":"256.00 MiB (268.44 MB)", 76 "numa_node":1, [all …]
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| /kernel/linux/linux-6.6/drivers/net/wireless/mediatek/mt76/mt7915/ |
| D | debugfs.c | 65 if (count && buf[count - 1] == '\n') in mt7915_sys_recovery_set() 66 buf[count - 1] = '\0'; in mt7915_sys_recovery_set() 76 * 1: trigger & enable system error L1 recovery. in mt7915_sys_recovery_set() 104 ret = mt7915_mcu_set_ser(dev, 1, 3, band); in mt7915_sys_recovery_set() 145 "1: trigger system error L1 recovery\n"); in mt7915_sys_recovery_get() 289 phy->mib.dl_cck_cnt, in mt7915_muru_stats_show() 290 phy->mib.dl_ofdm_cnt, in mt7915_muru_stats_show() 291 phy->mib.dl_htmix_cnt, in mt7915_muru_stats_show() 292 phy->mib.dl_htgf_cnt, in mt7915_muru_stats_show() 293 phy->mib.dl_vht_su_cnt); in mt7915_muru_stats_show() [all …]
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| D | main.c | 125 mt76_connac_mcu_set_pm(&dev->mt76, phy->mt76->band_idx, 1); in mt7915_stop() 130 mt76_connac_mcu_set_pm(&dev->mt76, dev->phy.mt76->band_idx, 1); in mt7915_stop() 150 /* prefer hw bssid slot 1-3 */ in get_omac_idx() 153 return i - 1; in get_omac_idx() 160 return i - 1; in get_omac_idx() 174 return i - 1; in get_omac_idx() 178 WARN_ON(1); in get_omac_idx() 182 return -1; in get_omac_idx() 254 mvif->sta.wcid.hw_key_idx = -1; in mt7915_add_interface() 272 memset(&mvif->cap, -1, sizeof(mvif->cap)); in mt7915_add_interface() [all …]
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| /kernel/linux/linux-5.10/drivers/net/dsa/microchip/ |
| D | ksz_common.c | 32 if (!(dev->member & (1 << i))) in ksz_update_port_member() 45 struct ksz_port_mib *mib = &dev->ports[port].mib; in port_r_cnt() local 48 /* Some ports may not have MIB counters before SWITCH_COUNTER_NUM. */ in port_r_cnt() 49 while (mib->cnt_ptr < dev->reg_mib_cnt) { in port_r_cnt() 50 dev->dev_ops->r_mib_cnt(dev, port, mib->cnt_ptr, in port_r_cnt() 51 &mib->counters[mib->cnt_ptr]); in port_r_cnt() 52 ++mib->cnt_ptr; in port_r_cnt() 56 dropped = &mib->counters[dev->mib_cnt]; in port_r_cnt() 58 /* Some ports may not have MIB counters after SWITCH_COUNTER_NUM. */ in port_r_cnt() 59 while (mib->cnt_ptr < dev->mib_cnt) { in port_r_cnt() [all …]
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| /kernel/linux/linux-6.6/drivers/net/ethernet/broadcom/ |
| D | b44.h | 21 #define WKUP_LEN_P1_MASK 0x00007f00 /* Pattern 1 */ 97 #define DMARX_CTRL_ROSHIFT 1 /* Receive Offset Shift */ 152 #define MDIO_OP_WRITE 1 160 #define EMAC_INT_MIB 0x00000002 /* MIB Interrupt */ 184 #define B44_MIB_CTRL 0x0438UL /* EMAC MIB Control */ 186 #define B44_TX_GOOD_O 0x0500UL /* MIB TX Good Octets */ 187 #define B44_TX_GOOD_P 0x0504UL /* MIB TX Good Packets */ 188 #define B44_TX_O 0x0508UL /* MIB TX Octets */ 189 #define B44_TX_P 0x050CUL /* MIB TX Packets */ 190 #define B44_TX_BCAST 0x0510UL /* MIB TX Broadcast Packets */ [all …]
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| /kernel/linux/linux-5.10/drivers/net/ethernet/broadcom/ |
| D | b44.h | 21 #define WKUP_LEN_P1_MASK 0x00007f00 /* Pattern 1 */ 97 #define DMARX_CTRL_ROSHIFT 1 /* Receive Offset Shift */ 152 #define MDIO_OP_WRITE 1 160 #define EMAC_INT_MIB 0x00000002 /* MIB Interrupt */ 184 #define B44_MIB_CTRL 0x0438UL /* EMAC MIB Control */ 186 #define B44_TX_GOOD_O 0x0500UL /* MIB TX Good Octets */ 187 #define B44_TX_GOOD_P 0x0504UL /* MIB TX Good Packets */ 188 #define B44_TX_O 0x0508UL /* MIB TX Octets */ 189 #define B44_TX_P 0x050CUL /* MIB TX Packets */ 190 #define B44_TX_BCAST 0x0510UL /* MIB TX Broadcast Packets */ [all …]
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| /kernel/linux/linux-6.6/Documentation/translations/zh_CN/admin-guide/mm/damon/ |
| D | start.rst | 75 # access_frequency: 0 1 2 3 4 5 6 7 8 9 76 # x-axis: space (139728247021568-139728453431248: 196.848 MiB) 77 # y-axis: time (15256597248362-15326899978162: 1 m 10.303 s) 78 # resolution: 80x40 (2.461 MiB and 1.758 s for each character) 85 # avr: 107.708 MiB 87 10 95.328 MiB |**************************** | 88 20 95.332 MiB |**************************** | 89 30 95.340 MiB |**************************** | 90 40 95.387 MiB |**************************** | 91 50 95.387 MiB |**************************** | [all …]
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| /kernel/linux/linux-6.6/Documentation/admin-guide/mm/damon/ |
| D | start.rst | 49 access two 100 MiB sized memory regions one by one. You can substitute this 75 # access_frequency: 0 1 2 3 4 5 6 7 8 9 76 # x-axis: space (139728247021568-139728453431248: 196.848 MiB) 77 # y-axis: time (15256597248362-15326899978162: 1 m 10.303 s) 78 # resolution: 80x40 (2.461 MiB and 1.758 s for each character) 86 # avr: 107.708 MiB 88 10 95.328 MiB |**************************** | 89 20 95.332 MiB |**************************** | 90 30 95.340 MiB |**************************** | 91 40 95.387 MiB |**************************** | [all …]
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| /kernel/linux/linux-5.10/arch/arm/boot/dts/ |
| D | armada-385-linksys-shelby.dts | 23 wan_white@1 { 75 /* 128MiB */ 78 #address-cells = <1>; 79 #size-cells = <1>; 83 reg = <0x0000000 0x200000>; /* 2MiB */ 99 reg = <0x900000 0x100000>; /* 1MiB */ 106 reg = <0xa00000 0x2800000>; /* 40MiB */ 111 reg = <0x1000000 0x2200000>; /* 34MiB */ 117 reg = <0x3200000 0x2800000>; /* 40MiB */ 122 reg = <0x3800000 0x2200000>; /* 34MiB */ [all …]
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| D | armada-385-linksys-cobra.dts | 23 wan_white@1 { 75 /* 128MiB */ 78 #address-cells = <1>; 79 #size-cells = <1>; 83 reg = <0x0000000 0x200000>; /* 2MiB */ 99 reg = <0x900000 0x100000>; /* 1MiB */ 106 reg = <0xa00000 0x2800000>; /* 40MiB */ 111 reg = <0x1000000 0x2200000>; /* 34MiB */ 117 reg = <0x3200000 0x2800000>; /* 40MiB */ 122 reg = <0x3800000 0x2200000>; /* 34MiB */ [all …]
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| /kernel/linux/linux-6.6/arch/arm/boot/dts/marvell/ |
| D | armada-385-linksys-shelby.dts | 23 wan_white@1 { 75 /* 128MiB */ 78 #address-cells = <1>; 79 #size-cells = <1>; 83 reg = <0x0000000 0x200000>; /* 2MiB */ 99 reg = <0x900000 0x100000>; /* 1MiB */ 106 reg = <0xa00000 0x2800000>; /* 40MiB */ 111 reg = <0x1000000 0x2200000>; /* 34MiB */ 117 reg = <0x3200000 0x2800000>; /* 40MiB */ 122 reg = <0x3800000 0x2200000>; /* 34MiB */ [all …]
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