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Searched refs:SG (Results 1 – 25 of 29) sorted by relevance

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/linux-6.1.9/drivers/net/ethernet/freescale/fman/
DKconfig19 align buffers, data start, SG fragment length to avoid FMan DMA
33 3. Scatter Gather (SG) frames have more than one SG buffer in
34 the SG list and any one of the buffers, except the last
35 buffer in the SG list has data size that is not a multiple
/linux-6.1.9/drivers/scsi/
D53c700.c349 dma_addr_t offset = (dma_addr_t)((unsigned long)&hostdata->slots[j].SG[0] in NCR_700_detect()
350 - (unsigned long)&hostdata->slots[0].SG[0]); in NCR_700_detect()
1032 slot->SG[0].ins = bS_to_host(SCRIPT_MOVE_DATA_IN | SCSI_SENSE_BUFFERSIZE); in process_script_interrupt()
1033 slot->SG[0].pAddr = bS_to_host(slot->dma_handle); in process_script_interrupt()
1034 slot->SG[1].ins = bS_to_host(SCRIPT_RETURN); in process_script_interrupt()
1035 slot->SG[1].pAddr = 0; in process_script_interrupt()
1037 dma_sync_to_dev(hostdata, slot->SG, sizeof(slot->SG[0])*2); in process_script_interrupt()
1207 __u32 SG = (__u32)bS_to_cpu(hostdata->script[A_SGScriptStartAddress_used[0]]); in process_script_interrupt() local
1211 if(SG >= to32bit(&hostdata->slots[i].pSG[0]) in process_script_interrupt()
1212 && SG <= to32bit(&hostdata->slots[i].pSG[NCR_700_SG_SEGMENTS])) in process_script_interrupt()
[all …]
D53c700.scr34 ; SG components is preceded by a script fragment which moves the
35 ; necessary amount of data and jumps to the next SG segment. The final
36 ; SG segment jumps back to . However, this address is the first SG script
Dhpsa_cmd.h433 struct SGDescriptor SG[SG_ENTRIES_IN_CMD]; member
504 struct SGDescriptor SG[IOACCEL1_MAXSGENTRIES]; member
D53c700_d.h_shipped37 ; SG components is preceded by a script fragment which moves the
38 ; necessary amount of data and jumps to the next SG segment. The final
39 ; SG segment jumps back to . However, this address is the first SG script
Dhpsa.c2308 chain_sg = &c->SG[h->max_cmd_sg_entries - 1]; in hpsa_map_sg_chain_block()
2333 chain_sg = &c->SG[h->max_cmd_sg_entries - 1]; in hpsa_unmap_sg_chain_block()
2811 dma_unmap_single(&pdev->dev, le64_to_cpu(c->SG[i].Addr), in hpsa_pci_unmap()
2812 le32_to_cpu(c->SG[i].Len), in hpsa_pci_unmap()
2837 cp->SG[0].Addr = cpu_to_le64(addr64); in hpsa_map_one()
2838 cp->SG[0].Len = cpu_to_le32(buflen); in hpsa_map_one()
2839 cp->SG[0].Ext = cpu_to_le32(HPSA_SG_LAST); /* we are not chaining */ in hpsa_map_one()
4599 curr_sg = cp->SG; in hpsa_scatter_gather()
4778 curr_sg = cp->SG; in hpsa_scsi_ioaccel1_queue_command()
6455 c->SG[0].Addr = cpu_to_le64(0); in hpsa_passthru_ioctl()
[all …]
D53c700.h171 struct NCR_700_SG_List SG[NCR_700_SG_SEGMENTS+1]; member
DKconfig149 bool "/dev/bsg support (SG v4)"
153 Saying Y here will enable generic SG (SCSI generic) v4 support
/linux-6.1.9/arch/sparc/kernel/
Diommu_common.h36 #define SG_ENT_PHYS_ADDRESS(SG) (__pa(sg_virt((SG)))) argument
/linux-6.1.9/drivers/scsi/mpt3sas/
DKconfig53 int "LSI MPT Fusion SAS 2.0 Max number of SG Entries (16 - 256)"
65 int "LSI MPT Fusion SAS 3.0 Max number of SG Entries (16 - 256)"
/linux-6.1.9/arch/alpha/kernel/
Dpci_iommu.c479 #define SG_ENT_VIRT_ADDRESS(SG) (sg_virt((SG))) argument
480 #define SG_ENT_PHYS_ADDRESS(SG) __pa(SG_ENT_VIRT_ADDRESS(SG)) argument
/linux-6.1.9/include/linux/
Dnetdev_features.h132 #define NETIF_F_SG __NETIF_F(SG)
/linux-6.1.9/Documentation/devicetree/bindings/arm/
Darm,coresight-tmc.yaml75 Indicates that the TMC-ETR can safely use the SG mode on this system.
/linux-6.1.9/Documentation/fb/
Ddeferred_io.rst36 whether to coalesce and issue SG DMA or to do memory bursts.
/linux-6.1.9/Documentation/scsi/
DChangeLog.ips43 4.70.15 - Fix Breakup for very large ( non-SG ) requests
/linux-6.1.9/Documentation/x86/x86_64/
Dboot-options.rst277 Do scatter-gather (SG) merging. Implies "force" (experimental).
279 Don't do scatter-gather (SG) merging.
/linux-6.1.9/Documentation/input/joydev/
Djoystick-api.rst270 JSIOC[SG]CORR
273 For usage on JSIOC[SG]CORR I suggest you to look into jscal.c They are
/linux-6.1.9/Documentation/networking/device_drivers/ethernet/freescale/dpaa2/
Dethernet-driver.rst176 Scatter-gather frames are supported on both RX and TX paths. On TX, SG support
/linux-6.1.9/block/
DKconfig52 bool "Block layer SG support v4 helper lib"
/linux-6.1.9/drivers/regulator/
Dda9121-regulator.c172 DA9xxx_STATUS(0, 0, SG, 0, "Handled E_SG\n"),
/linux-6.1.9/drivers/scsi/aic7xxx/
Daic7xxx.seq769 /* Does the hardware have space for another SG entry? */
1093 /* If we are the last SG block, tell the hardware. */
1187 * Load the next SG element's data address and length
1276 * After a DMA finishes, save the SG and STCNT residuals back into
Daic79xx.reg1053 * SG Sequencer Byte Count
2922 * CMC SG Ram Address Pointer
2953 * CMC SG Control
2998 * CMC SG RAM Data Port
/linux-6.1.9/Documentation/admin-guide/blockdev/
Dparide.rst88 ktti KT Technology PHd adapter (SG)
/linux-6.1.9/Documentation/sound/kernel-api/
Dwriting-an-alsa-driver.rst2149 the standard SG-buffer or vmalloc-buffer. Hence this callback should
3759 descriptors as in via82xx, you can use the scatter-gather (SG) DMA. ALSA
3760 provides an interface for handling SG-buffers. The API is provided in
3763 For creating the SG-buffer handler, call
3783 Then in :c:func:`snd_pcm_lib_malloc_pages()` call, the common SG-buffer
3792 If you need to release the SG-buffer data explicitly, call the
/linux-6.1.9/Documentation/devicetree/bindings/
Dvendor-prefixes.yaml1131 description: SG Micro Corp

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