13446Smrj /* 24478Skz151634 * Copyright 2007 Sun Microsystems, Inc. All rights reserved. 33446Smrj * Use is subject to license terms. 43446Smrj */ 53446Smrj /* 63446Smrj * Portions Philip Brown phil@bolthole.com Dec 2001 73446Smrj */ 83446Smrj 93446Smrj #pragma ident "%Z%%M% %I% %E% SMI" 103446Smrj 113446Smrj /* 123446Smrj * agpgart driver 133446Smrj * 143446Smrj * This driver is primary targeted at providing memory support for INTEL 153446Smrj * AGP device, INTEL memory less video card, and AMD64 cpu GART devices. 163446Smrj * So there are four main architectures, ARC_IGD810, ARC_IGD830, ARC_INTELAGP, 17*5376Scg149915 * ARC_AMD64AGP to agpgart driver. However, the memory 183446Smrj * interfaces are the same for these architectures. The difference is how to 193446Smrj * manage the hardware GART table for them. 203446Smrj * 213446Smrj * For large memory allocation, this driver use direct mapping to userland 223446Smrj * application interface to save kernel virtual memory . 233446Smrj */ 243446Smrj 253446Smrj #include <sys/types.h> 263446Smrj #include <sys/pci.h> 273446Smrj #include <sys/systm.h> 283446Smrj #include <sys/conf.h> 293446Smrj #include <sys/file.h> 303446Smrj #include <sys/kstat.h> 313446Smrj #include <sys/stat.h> 323446Smrj #include <sys/modctl.h> 333446Smrj #include <sys/ddi.h> 343446Smrj #include <sys/sunddi.h> 353446Smrj #include <sys/sunldi.h> 363446Smrj #include <sys/policy.h> 373446Smrj #include <sys/ddidevmap.h> 383446Smrj #include <vm/seg_dev.h> 393446Smrj #include <sys/pmem.h> 403446Smrj #include <sys/agpgart.h> 413446Smrj #include <sys/agp/agpdefs.h> 423446Smrj #include <sys/agp/agpgart_impl.h> 433446Smrj #include <sys/agp/agpamd64gart_io.h> 443446Smrj #include <sys/agp/agpmaster_io.h> 453446Smrj #include <sys/agp/agptarget_io.h> 463446Smrj 473446Smrj /* Dynamic debug support */ 483446Smrj int agp_debug_var = 0; 493446Smrj #define AGPDB_PRINT1(fmt) if (agp_debug_var == 1) cmn_err fmt 503446Smrj #define AGPDB_PRINT2(fmt) if (agp_debug_var >= 1) cmn_err fmt 513446Smrj 523446Smrj /* Driver global softstate handle */ 533446Smrj static void *agpgart_glob_soft_handle; 543446Smrj 553446Smrj #define MAX_INSTNUM 16 563446Smrj 573446Smrj #define AGP_DEV2INST(devt) (getminor((devt)) >> 4) 583446Smrj #define AGP_INST2MINOR(instance) ((instance) << 4) 593446Smrj #define IS_INTEL_830(type) ((type) == ARC_IGD830) 603446Smrj #define IS_TRUE_AGP(type) (((type) == ARC_INTELAGP) || \ 613446Smrj ((type) == ARC_AMD64AGP)) 623446Smrj 633446Smrj #define agpinfo_default_to_32(v, v32) \ 643446Smrj { \ 653446Smrj (v32).agpi32_version = (v).agpi_version; \ 663446Smrj (v32).agpi32_devid = (v).agpi_devid; \ 673446Smrj (v32).agpi32_mode = (v).agpi_mode; \ 683446Smrj (v32).agpi32_aperbase = (v).agpi_aperbase; \ 693446Smrj (v32).agpi32_apersize = (v).agpi_apersize; \ 703446Smrj (v32).agpi32_pgtotal = (v).agpi_pgtotal; \ 713446Smrj (v32).agpi32_pgsystem = (v).agpi_pgsystem; \ 723446Smrj (v32).agpi32_pgused = (v).agpi_pgused; \ 733446Smrj } 743446Smrj 753446Smrj static ddi_dma_attr_t agpgart_dma_attr = { 763446Smrj DMA_ATTR_V0, 773446Smrj 0U, /* dma_attr_addr_lo */ 783446Smrj 0xffffffffU, /* dma_attr_addr_hi */ 793446Smrj 0xffffffffU, /* dma_attr_count_max */ 803446Smrj (uint64_t)AGP_PAGE_SIZE, /* dma_attr_align */ 813446Smrj 1, /* dma_attr_burstsizes */ 823446Smrj 1, /* dma_attr_minxfer */ 833446Smrj 0xffffffffU, /* dma_attr_maxxfer */ 843446Smrj 0xffffffffU, /* dma_attr_seg */ 853446Smrj 1, /* dma_attr_sgllen, variable */ 863446Smrj 4, /* dma_attr_granular */ 873446Smrj 0 /* dma_attr_flags */ 883446Smrj }; 893446Smrj 903446Smrj /* 913446Smrj * AMD64 supports gart table above 4G. See alloc_gart_table. 923446Smrj */ 933446Smrj static ddi_dma_attr_t garttable_dma_attr = { 943446Smrj DMA_ATTR_V0, 953446Smrj 0U, /* dma_attr_addr_lo */ 963446Smrj 0xffffffffU, /* dma_attr_addr_hi */ 973446Smrj 0xffffffffU, /* dma_attr_count_max */ 983446Smrj (uint64_t)AGP_PAGE_SIZE, /* dma_attr_align */ 993446Smrj 1, /* dma_attr_burstsizes */ 1003446Smrj 1, /* dma_attr_minxfer */ 1013446Smrj 0xffffffffU, /* dma_attr_maxxfer */ 1023446Smrj 0xffffffffU, /* dma_attr_seg */ 1033446Smrj 1, /* dma_attr_sgllen, variable */ 1043446Smrj 4, /* dma_attr_granular */ 1053446Smrj 0 /* dma_attr_flags */ 1063446Smrj }; 1073446Smrj 1083446Smrj /* 1093446Smrj * AGPGART table need a physical contiguous memory. To assure that 1103446Smrj * each access to gart table is strongly ordered and uncachable, 1113446Smrj * we use DDI_STRICTORDER_ACC. 1123446Smrj */ 1133446Smrj static ddi_device_acc_attr_t gart_dev_acc_attr = { 1143446Smrj DDI_DEVICE_ATTR_V0, 1153446Smrj DDI_NEVERSWAP_ACC, 1163446Smrj DDI_STRICTORDER_ACC /* must be DDI_STRICTORDER_ACC */ 1173446Smrj }; 1183446Smrj 1193446Smrj /* 1203446Smrj * AGP memory is usually used as texture memory or for a framebuffer, so we 1213446Smrj * can set the memory attribute to write combining. Video drivers will 1223446Smrj * determine the frame buffer attributes, for example the memory is write 1233446Smrj * combinging or non-cachable. However, the interface between Xorg and agpgart 1243446Smrj * driver to support attribute selcetion doesn't exist yet. So we set agp memory 1253446Smrj * to non-cachable by default now. This attribute might be overridden 1263446Smrj * by MTTR in X86. 1273446Smrj */ 1283446Smrj static ddi_device_acc_attr_t mem_dev_acc_attr = { 1293446Smrj DDI_DEVICE_ATTR_V0, 1303446Smrj DDI_NEVERSWAP_ACC, 1313446Smrj DDI_STRICTORDER_ACC /* Can be DDI_MERGING_OK_ACC */ 1323446Smrj }; 1333446Smrj 1343446Smrj static keytable_ent_t * 1353446Smrj agp_find_bound_keyent(agpgart_softstate_t *softstate, uint32_t pg_offset); 1363446Smrj static void 1373446Smrj amd64_gart_unregister(amd64_garts_dev_t *cpu_garts); 1383446Smrj 1393446Smrj 1403446Smrj static void 1413446Smrj agp_devmap_unmap(devmap_cookie_t handle, void *devprivate, 1423446Smrj offset_t off, size_t len, devmap_cookie_t new_handle1, 1433446Smrj void **new_devprivate1, devmap_cookie_t new_handle2, 1443446Smrj void **new_devprivate2) 1453446Smrj { 1463446Smrj 1473446Smrj struct keytable_ent *mementry; 1483446Smrj agpgart_softstate_t *softstate; 1493446Smrj agpgart_ctx_t *ctxp, *newctxp1, *newctxp2; 1503446Smrj 1513446Smrj ASSERT(AGP_ALIGNED(len) && AGP_ALIGNED(off)); 1523446Smrj ASSERT(devprivate); 1533446Smrj ASSERT(handle); 1543446Smrj 1553446Smrj ctxp = (agpgart_ctx_t *)devprivate; 1563446Smrj softstate = ctxp->actx_sc; 1573446Smrj ASSERT(softstate); 1583446Smrj 1593446Smrj if (new_handle1 != NULL) { 1603446Smrj newctxp1 = kmem_zalloc(sizeof (agpgart_ctx_t), KM_SLEEP); 1613446Smrj newctxp1->actx_sc = softstate; 1623446Smrj newctxp1->actx_off = ctxp->actx_off; 1633446Smrj *new_devprivate1 = newctxp1; 1643446Smrj } 1653446Smrj 1663446Smrj if (new_handle2 != NULL) { 1673446Smrj newctxp2 = kmem_zalloc(sizeof (agpgart_ctx_t), KM_SLEEP); 1683446Smrj newctxp2->actx_sc = softstate; 1693446Smrj newctxp2->actx_off = off + len; 1703446Smrj *new_devprivate2 = newctxp2; 1713446Smrj } 1723446Smrj 1733446Smrj mutex_enter(&softstate->asoft_instmutex); 1743446Smrj if ((new_handle1 == NULL) && (new_handle2 == NULL)) { 1753446Smrj mementry = 1763446Smrj agp_find_bound_keyent(softstate, AGP_BYTES2PAGES(off)); 1773446Smrj ASSERT(mementry); 1783446Smrj mementry->kte_refcnt--; 1793446Smrj } else if ((new_handle1 != NULL) && (new_handle2 != NULL)) { 1803446Smrj mementry = 1813446Smrj agp_find_bound_keyent(softstate, AGP_BYTES2PAGES(off)); 1823446Smrj ASSERT(mementry); 1833446Smrj mementry->kte_refcnt++; 1843446Smrj } 1853446Smrj ASSERT(mementry->kte_refcnt >= 0); 1863446Smrj mutex_exit(&softstate->asoft_instmutex); 1873446Smrj kmem_free(ctxp, sizeof (struct agpgart_ctx)); 1883446Smrj } 1893446Smrj 1903446Smrj /*ARGSUSED*/ 1913446Smrj static int 1923446Smrj agp_devmap_map(devmap_cookie_t handle, dev_t dev, 1933446Smrj uint_t flags, offset_t offset, size_t len, void **new_devprivate) 1943446Smrj { 1953446Smrj agpgart_softstate_t *softstate; 1963446Smrj int instance; 1973446Smrj struct keytable_ent *mementry; 1983446Smrj agpgart_ctx_t *newctxp; 1993446Smrj 2003446Smrj ASSERT(handle); 2013446Smrj instance = AGP_DEV2INST(dev); 2023446Smrj softstate = ddi_get_soft_state(agpgart_glob_soft_handle, instance); 2033446Smrj if (softstate == NULL) { 2043446Smrj AGPDB_PRINT2((CE_WARN, "agp_devmap_map: get soft state err")); 2053446Smrj return (ENXIO); 2063446Smrj } 2073446Smrj 2083446Smrj ASSERT(softstate); 2093446Smrj ASSERT(mutex_owned(&softstate->asoft_instmutex)); 2103446Smrj ASSERT(len); 2113446Smrj ASSERT(AGP_ALIGNED(offset) && AGP_ALIGNED(len)); 2123446Smrj 2133446Smrj mementry = 2143446Smrj agp_find_bound_keyent(softstate, AGP_BYTES2PAGES(offset)); 2153446Smrj ASSERT(mementry); 2163446Smrj mementry->kte_refcnt++; 2173446Smrj ASSERT(mementry->kte_refcnt >= 0); 2183446Smrj newctxp = kmem_zalloc(sizeof (agpgart_ctx_t), KM_SLEEP); 2193446Smrj newctxp->actx_off = offset; 2203446Smrj newctxp->actx_sc = softstate; 2213446Smrj *new_devprivate = newctxp; 2223446Smrj 2233446Smrj return (0); 2243446Smrj } 2253446Smrj 2263446Smrj /*ARGSUSED*/ 2273446Smrj static int agp_devmap_dup(devmap_cookie_t handle, void *devprivate, 2283446Smrj devmap_cookie_t new_handle, void **new_devprivate) 2293446Smrj { 2303446Smrj struct keytable_ent *mementry; 2313446Smrj agpgart_ctx_t *newctxp, *ctxp; 2323446Smrj agpgart_softstate_t *softstate; 2333446Smrj 2343446Smrj ASSERT(devprivate); 2353446Smrj ASSERT(handle && new_handle); 2363446Smrj 2373446Smrj ctxp = (agpgart_ctx_t *)devprivate; 2383446Smrj ASSERT(AGP_ALIGNED(ctxp->actx_off)); 2393446Smrj 2403446Smrj newctxp = kmem_zalloc(sizeof (agpgart_ctx_t), KM_SLEEP); 2413446Smrj newctxp->actx_off = ctxp->actx_off; 2423446Smrj newctxp->actx_sc = ctxp->actx_sc; 2433446Smrj softstate = (agpgart_softstate_t *)newctxp->actx_sc; 2443446Smrj 2453446Smrj mutex_enter(&softstate->asoft_instmutex); 2463446Smrj mementry = agp_find_bound_keyent(softstate, 2473446Smrj AGP_BYTES2PAGES(newctxp->actx_off)); 2483446Smrj mementry->kte_refcnt++; 2493446Smrj ASSERT(mementry->kte_refcnt >= 0); 2503446Smrj mutex_exit(&softstate->asoft_instmutex); 2513446Smrj *new_devprivate = newctxp; 2523446Smrj 2533446Smrj return (0); 2543446Smrj } 2553446Smrj 2563446Smrj struct devmap_callback_ctl agp_devmap_cb = { 2573446Smrj DEVMAP_OPS_REV, /* rev */ 2583446Smrj agp_devmap_map, /* map */ 2593446Smrj NULL, /* access */ 2603446Smrj agp_devmap_dup, /* dup */ 2613446Smrj agp_devmap_unmap, /* unmap */ 2623446Smrj }; 2633446Smrj 2643446Smrj /* 2653446Smrj * agp_master_regis_byname() 2663446Smrj * 2673446Smrj * Description: 2683446Smrj * Open the AGP master device node by device path name and 2693446Smrj * register the device handle for later operations. 2703446Smrj * We check all possible driver instance from 0 2713446Smrj * to MAX_INSTNUM because the master device could be 2723446Smrj * at any instance number. Only one AGP master is supported. 2733446Smrj * 2743446Smrj * Arguments: 2753446Smrj * master_hdlp AGP master device LDI handle pointer 2763446Smrj * agpgart_l AGPGART driver LDI identifier 2773446Smrj * 2783446Smrj * Returns: 2793446Smrj * -1 failed 2803446Smrj * 0 success 2813446Smrj */ 2823446Smrj static int 2833446Smrj agp_master_regis_byname(ldi_handle_t *master_hdlp, ldi_ident_t agpgart_li) 2843446Smrj { 2853446Smrj int i; 2863446Smrj char buf[MAXPATHLEN]; 2873446Smrj 2883446Smrj ASSERT(master_hdlp); 2893446Smrj ASSERT(agpgart_li); 2903446Smrj 2913446Smrj /* 2923446Smrj * Search all possible instance numbers for the agp master device. 2933446Smrj * Only one master device is supported now, so the search ends 2943446Smrj * when one master device is found. 2953446Smrj */ 2963446Smrj for (i = 0; i < MAX_INSTNUM; i++) { 2973446Smrj (void) snprintf(buf, MAXPATHLEN, "%s%d", AGPMASTER_DEVLINK, i); 2983446Smrj if ((ldi_open_by_name(buf, 0, kcred, 2993446Smrj master_hdlp, agpgart_li))) 3003446Smrj continue; 3013446Smrj AGPDB_PRINT1((CE_NOTE, 3023446Smrj "master device found: instance number=%d", i)); 3033446Smrj break; 3043446Smrj 3053446Smrj } 3063446Smrj 3073446Smrj /* AGP master device not found */ 3083446Smrj if (i == MAX_INSTNUM) 3093446Smrj return (-1); 3103446Smrj 3113446Smrj return (0); 3123446Smrj } 3133446Smrj 3143446Smrj /* 3153446Smrj * agp_target_regis_byname() 3163446Smrj * 3173446Smrj * Description: 3183446Smrj * This function opens agp bridge device node by 3193446Smrj * device path name and registers the device handle 3203446Smrj * for later operations. 3213446Smrj * We check driver instance from 0 to MAX_INSTNUM 3223446Smrj * because the master device could be at any instance 3233446Smrj * number. Only one agp target is supported. 3243446Smrj * 3253446Smrj * 3263446Smrj * Arguments: 3273446Smrj * target_hdlp AGP target device LDI handle pointer 3283446Smrj * agpgart_l AGPGART driver LDI identifier 3293446Smrj * 3303446Smrj * Returns: 3313446Smrj * -1 failed 3323446Smrj * 0 success 3333446Smrj */ 3343446Smrj static int 3353446Smrj agp_target_regis_byname(ldi_handle_t *target_hdlp, ldi_ident_t agpgart_li) 3363446Smrj { 3373446Smrj int i; 3383446Smrj char buf[MAXPATHLEN]; 3393446Smrj 3403446Smrj ASSERT(target_hdlp); 3413446Smrj ASSERT(agpgart_li); 3423446Smrj 3433446Smrj for (i = 0; i < MAX_INSTNUM; i++) { 3443446Smrj (void) snprintf(buf, MAXPATHLEN, "%s%d", AGPTARGET_DEVLINK, i); 3453446Smrj if ((ldi_open_by_name(buf, 0, kcred, 3463446Smrj target_hdlp, agpgart_li))) 3473446Smrj continue; 3483446Smrj 3493446Smrj AGPDB_PRINT1((CE_NOTE, 3503446Smrj "bridge device found: instance number=%d", i)); 3513446Smrj break; 3523446Smrj 3533446Smrj } 3543446Smrj 3553446Smrj /* AGP bridge device not found */ 3563446Smrj if (i == MAX_INSTNUM) { 3573446Smrj AGPDB_PRINT2((CE_WARN, "bridge device not found")); 3583446Smrj return (-1); 3593446Smrj } 3603446Smrj 3613446Smrj return (0); 3623446Smrj } 3633446Smrj 3643446Smrj /* 3653446Smrj * amd64_gart_regis_byname() 3663446Smrj * 3673446Smrj * Description: 3683446Smrj * Open all amd64 gart device nodes by deice path name and 3693446Smrj * register the device handles for later operations. Each cpu 3703446Smrj * has its own amd64 gart device. 3713446Smrj * 3723446Smrj * Arguments: 3733446Smrj * cpu_garts cpu garts device list header 3743446Smrj * agpgart_l AGPGART driver LDI identifier 3753446Smrj * 3763446Smrj * Returns: 3773446Smrj * -1 failed 3783446Smrj * 0 success 3793446Smrj */ 3803446Smrj static int 3813446Smrj amd64_gart_regis_byname(amd64_garts_dev_t *cpu_garts, ldi_ident_t agpgart_li) 3823446Smrj { 3833446Smrj amd64_gart_dev_list_t *gart_list; 3843446Smrj int i; 3853446Smrj char buf[MAXPATHLEN]; 3863446Smrj ldi_handle_t gart_hdl; 3873446Smrj int ret; 3883446Smrj 3893446Smrj ASSERT(cpu_garts); 3903446Smrj ASSERT(agpgart_li); 3913446Smrj 3923446Smrj /* 3933446Smrj * Search all possible instance numbers for the gart devices. 3943446Smrj * There can be multiple on-cpu gart devices for Opteron server. 3953446Smrj */ 3963446Smrj for (i = 0; i < MAX_INSTNUM; i++) { 3973446Smrj (void) snprintf(buf, MAXPATHLEN, "%s%d", CPUGART_DEVLINK, i); 3983446Smrj ret = ldi_open_by_name(buf, 0, kcred, 3993446Smrj &gart_hdl, agpgart_li); 4003446Smrj 4013446Smrj if (ret == ENODEV) 4023446Smrj continue; 4033446Smrj else if (ret != 0) { /* There was an error opening the device */ 4043446Smrj amd64_gart_unregister(cpu_garts); 4053446Smrj return (ret); 4063446Smrj } 4073446Smrj 4083446Smrj AGPDB_PRINT1((CE_NOTE, 4093446Smrj "amd64 gart device found: instance number=%d", i)); 4103446Smrj 4113446Smrj gart_list = (amd64_gart_dev_list_t *) 4123446Smrj kmem_zalloc(sizeof (amd64_gart_dev_list_t), KM_SLEEP); 4133446Smrj 4143446Smrj /* Add new item to the head of the gart device list */ 4153446Smrj gart_list->gart_devhdl = gart_hdl; 4163446Smrj gart_list->next = cpu_garts->gart_dev_list_head; 4173446Smrj cpu_garts->gart_dev_list_head = gart_list; 4183446Smrj cpu_garts->gart_device_num++; 4193446Smrj } 4203446Smrj 4213446Smrj if (cpu_garts->gart_device_num == 0) 4223446Smrj return (ENODEV); 4233446Smrj return (0); 4243446Smrj } 4253446Smrj 4263446Smrj /* 4273446Smrj * Unregister agp master device handle 4283446Smrj */ 4293446Smrj static void 4303446Smrj agp_master_unregister(ldi_handle_t *master_hdlp) 4313446Smrj { 4323446Smrj ASSERT(master_hdlp); 4333446Smrj 4343446Smrj if (master_hdlp) { 4353446Smrj (void) ldi_close(*master_hdlp, 0, kcred); 4363446Smrj *master_hdlp = NULL; 4373446Smrj } 4383446Smrj } 4393446Smrj 4403446Smrj /* 4413446Smrj * Unregister agp bridge device handle 4423446Smrj */ 4433446Smrj static void 4443446Smrj agp_target_unregister(ldi_handle_t *target_hdlp) 4453446Smrj { 4463446Smrj if (target_hdlp) { 4473446Smrj (void) ldi_close(*target_hdlp, 0, kcred); 4483446Smrj *target_hdlp = NULL; 4493446Smrj } 4503446Smrj } 4513446Smrj 4523446Smrj /* 4533446Smrj * Unregister all amd64 gart device handles 4543446Smrj */ 4553446Smrj static void 4563446Smrj amd64_gart_unregister(amd64_garts_dev_t *cpu_garts) 4573446Smrj { 4583446Smrj amd64_gart_dev_list_t *gart_list; 4593446Smrj amd64_gart_dev_list_t *next; 4603446Smrj 4613446Smrj ASSERT(cpu_garts); 4623446Smrj 4633446Smrj for (gart_list = cpu_garts->gart_dev_list_head; 4643446Smrj gart_list; gart_list = next) { 4653446Smrj 4663446Smrj ASSERT(gart_list->gart_devhdl); 4673446Smrj (void) ldi_close(gart_list->gart_devhdl, 0, kcred); 4683446Smrj next = gart_list->next; 4693446Smrj /* Free allocated memory */ 4703446Smrj kmem_free(gart_list, sizeof (amd64_gart_dev_list_t)); 4713446Smrj } 4723446Smrj cpu_garts->gart_dev_list_head = NULL; 4733446Smrj cpu_garts->gart_device_num = 0; 4743446Smrj } 4753446Smrj 4763446Smrj /* 4773446Smrj * lyr_detect_master_type() 4783446Smrj * 4793446Smrj * Description: 4803446Smrj * This function gets agp master type by querying agp master device. 4813446Smrj * 4823446Smrj * Arguments: 4833446Smrj * master_hdlp agp master device ldi handle pointer 4843446Smrj * 4853446Smrj * Returns: 4863446Smrj * -1 unsupported device 4873446Smrj * DEVICE_IS_I810 i810 series 4883446Smrj * DEVICE_IS_I810 i830 series 4893446Smrj * DEVICE_IS_AGP true agp master 4903446Smrj */ 4913446Smrj static int 4923446Smrj lyr_detect_master_type(ldi_handle_t *master_hdlp) 4933446Smrj { 4943446Smrj int vtype; 4953446Smrj int err; 4963446Smrj 4973446Smrj ASSERT(master_hdlp); 4983446Smrj 4993446Smrj /* ldi_ioctl(agpmaster) */ 5003446Smrj err = ldi_ioctl(*master_hdlp, DEVICE_DETECT, 5013446Smrj (intptr_t)&vtype, FKIOCTL, kcred, 0); 5023446Smrj if (err) /* Unsupported graphics device */ 5033446Smrj return (-1); 5043446Smrj return (vtype); 5053446Smrj } 5063446Smrj 5073446Smrj /* 5083446Smrj * devtect_target_type() 5093446Smrj * 5103446Smrj * Description: 5113446Smrj * This function gets the host bridge chipset type by querying the agp 5123446Smrj * target device. 5133446Smrj * 5143446Smrj * Arguments: 5153446Smrj * target_hdlp agp target device LDI handle pointer 5163446Smrj * 5173446Smrj * Returns: 5183446Smrj * CHIP_IS_INTEL Intel agp chipsets 5193446Smrj * CHIP_IS_AMD AMD agp chipset 5203446Smrj * -1 unsupported chipset 5213446Smrj */ 5223446Smrj static int 5233446Smrj lyr_detect_target_type(ldi_handle_t *target_hdlp) 5243446Smrj { 5253446Smrj int btype; 5263446Smrj int err; 5273446Smrj 5283446Smrj ASSERT(target_hdlp); 5293446Smrj 5303446Smrj err = ldi_ioctl(*target_hdlp, CHIP_DETECT, (intptr_t)&btype, 5313446Smrj FKIOCTL, kcred, 0); 5323446Smrj if (err) /* Unsupported bridge device */ 5333446Smrj return (-1); 5343446Smrj return (btype); 5353446Smrj } 5363446Smrj 5373446Smrj /* 5383446Smrj * lyr_init() 5393446Smrj * 5403446Smrj * Description: 5413446Smrj * This function detects the graphics system architecture and 5423446Smrj * registers all relative device handles in a global structure 5433446Smrj * "agp_regdev". Then it stores the system arc type in driver 5443446Smrj * soft state. 5453446Smrj * 5463446Smrj * Arguments: 5473446Smrj * agp_regdev AGP devices registration struct pointer 5483446Smrj * agpgart_l AGPGART driver LDI identifier 5493446Smrj * 5503446Smrj * Returns: 5513446Smrj * 0 System arc supported and agp devices registration successed. 5523446Smrj * -1 System arc not supported or device registration failed. 5533446Smrj */ 5543446Smrj int 5553446Smrj lyr_init(agp_registered_dev_t *agp_regdev, ldi_ident_t agpgart_li) 5563446Smrj { 5573446Smrj ldi_handle_t *master_hdlp; 5583446Smrj ldi_handle_t *target_hdlp; 5593446Smrj amd64_garts_dev_t *garts_dev; 5603446Smrj int card_type, chip_type; 5613446Smrj int ret; 5623446Smrj 5633446Smrj ASSERT(agp_regdev); 5643446Smrj 5653446Smrj bzero(agp_regdev, sizeof (agp_registered_dev_t)); 5663446Smrj agp_regdev->agprd_arctype = ARC_UNKNOWN; 5673446Smrj /* 5683446Smrj * Register agp devices, assuming all instances attached, and 5693446Smrj * detect which agp architucture this server belongs to. This 5703446Smrj * must be done before the agpgart driver starts to use layered 5713446Smrj * driver interfaces. 5723446Smrj */ 5733446Smrj master_hdlp = &agp_regdev->agprd_masterhdl; 5743446Smrj target_hdlp = &agp_regdev->agprd_targethdl; 5753446Smrj garts_dev = &agp_regdev->agprd_cpugarts; 5763446Smrj 5773446Smrj /* Check whether the system is amd64 arc */ 5783446Smrj if ((ret = amd64_gart_regis_byname(garts_dev, agpgart_li)) == ENODEV) { 5793446Smrj /* No amd64 gart devices */ 5803446Smrj AGPDB_PRINT1((CE_NOTE, 5813446Smrj "lyr_init: this is not an amd64 system")); 5823446Smrj if (agp_master_regis_byname(master_hdlp, agpgart_li)) { 5833446Smrj AGPDB_PRINT2((CE_WARN, 5843446Smrj "lyr_init: register master device unsuccessful")); 5853446Smrj goto err1; 5863446Smrj } 5873446Smrj if (agp_target_regis_byname(target_hdlp, agpgart_li)) { 5883446Smrj AGPDB_PRINT2((CE_WARN, 5893446Smrj "lyr_init: register target device unsuccessful")); 5903446Smrj goto err2; 5913446Smrj } 5923446Smrj card_type = lyr_detect_master_type(master_hdlp); 5933446Smrj /* 5943446Smrj * Detect system arc by master device. If it is a intel 5953446Smrj * integrated device, finish the detection successfully. 5963446Smrj */ 5973446Smrj switch (card_type) { 5983446Smrj case DEVICE_IS_I810: /* I810 likewise graphics */ 5993446Smrj AGPDB_PRINT1((CE_NOTE, 6003446Smrj "lyr_init: the system is Intel 810 arch")); 6013446Smrj agp_regdev->agprd_arctype = ARC_IGD810; 6023446Smrj return (0); 6033446Smrj case DEVICE_IS_I830: /* I830 likewise graphics */ 6043446Smrj AGPDB_PRINT1((CE_NOTE, 6053446Smrj "lyr_init: the system is Intel 830 arch")); 6063446Smrj agp_regdev->agprd_arctype = ARC_IGD830; 6073446Smrj return (0); 6083446Smrj case DEVICE_IS_AGP: /* AGP graphics */ 6093446Smrj break; 6103446Smrj default: /* Non IGD/AGP graphics */ 6113446Smrj AGPDB_PRINT2((CE_WARN, 6123446Smrj "lyr_init: non-supported master device")); 6133446Smrj goto err3; 6143446Smrj } 6153446Smrj 6163446Smrj chip_type = lyr_detect_target_type(target_hdlp); 6173446Smrj 6183446Smrj /* Continue to detect AGP arc by target device */ 6193446Smrj switch (chip_type) { 6203446Smrj case CHIP_IS_INTEL: /* Intel chipset */ 6213446Smrj AGPDB_PRINT1((CE_NOTE, 6223446Smrj "lyr_init: Intel AGP arch detected")); 6233446Smrj agp_regdev->agprd_arctype = ARC_INTELAGP; 6243446Smrj return (0); 6253446Smrj case CHIP_IS_AMD: /* AMD chipset */ 6263446Smrj AGPDB_PRINT2((CE_WARN, 6273446Smrj "lyr_init: no cpu gart, but have AMD64 chipsets")); 6283446Smrj goto err3; 6293446Smrj default: /* Non supported chipset */ 6303446Smrj AGPDB_PRINT2((CE_WARN, 6313446Smrj "lyr_init: detection can not continue")); 6323446Smrj goto err3; 6333446Smrj } 6343446Smrj 6353446Smrj } 6363446Smrj 6373446Smrj if (ret) 6383446Smrj return (-1); /* Errors in open amd64 cpu gart devices */ 6393446Smrj 6403446Smrj /* 6413446Smrj * AMD64 cpu gart device exsits, continue detection 6423446Smrj */ 6433446Smrj if (agp_master_regis_byname(master_hdlp, agpgart_li)) { 644*5376Scg149915 AGPDB_PRINT1((CE_NOTE, "lyr_init: no AGP master in amd64")); 645*5376Scg149915 goto err1; 6463446Smrj } 6473446Smrj 6483446Smrj if (agp_target_regis_byname(target_hdlp, agpgart_li)) { 6493446Smrj AGPDB_PRINT1((CE_NOTE, 650*5376Scg149915 "lyr_init: no AGP bridge")); 651*5376Scg149915 goto err2; 6523446Smrj } 6533446Smrj 6543446Smrj AGPDB_PRINT1((CE_NOTE, 6553446Smrj "lyr_init: the system is AMD64 AGP architecture")); 6563446Smrj 6573446Smrj agp_regdev->agprd_arctype = ARC_AMD64AGP; 6583446Smrj 6593446Smrj return (0); /* Finished successfully */ 6603446Smrj 6613446Smrj err3: 6623446Smrj agp_target_unregister(&agp_regdev->agprd_targethdl); 6633446Smrj err2: 6643446Smrj agp_master_unregister(&agp_regdev->agprd_masterhdl); 6653446Smrj err1: 6663446Smrj agp_regdev->agprd_arctype = ARC_UNKNOWN; 6673446Smrj return (-1); 6683446Smrj } 6693446Smrj 6703446Smrj void 6713446Smrj lyr_end(agp_registered_dev_t *agp_regdev) 6723446Smrj { 6733446Smrj ASSERT(agp_regdev); 6743446Smrj 6753446Smrj switch (agp_regdev->agprd_arctype) { 6763446Smrj case ARC_IGD810: 6773446Smrj case ARC_IGD830: 6783446Smrj case ARC_INTELAGP: 6793446Smrj agp_master_unregister(&agp_regdev->agprd_masterhdl); 6803446Smrj agp_target_unregister(&agp_regdev->agprd_targethdl); 6813446Smrj 6823446Smrj return; 6833446Smrj case ARC_AMD64AGP: 6843446Smrj agp_master_unregister(&agp_regdev->agprd_masterhdl); 6853446Smrj agp_target_unregister(&agp_regdev->agprd_targethdl); 6863446Smrj amd64_gart_unregister(&agp_regdev->agprd_cpugarts); 6873446Smrj 6883446Smrj return; 6893446Smrj default: 6903446Smrj ASSERT(0); 6913446Smrj return; 6923446Smrj } 6933446Smrj } 6943446Smrj 6953446Smrj int 6963446Smrj lyr_get_info(agp_kern_info_t *info, agp_registered_dev_t *agp_regdev) 6973446Smrj { 6983446Smrj ldi_handle_t hdl; 6993446Smrj igd_info_t value1; 7003446Smrj i_agp_info_t value2; 7013446Smrj size_t prealloc_size; 7023446Smrj int err; 7033446Smrj 7043446Smrj ASSERT(info); 7053446Smrj ASSERT(agp_regdev); 7063446Smrj 7073446Smrj switch (agp_regdev->agprd_arctype) { 7083446Smrj case ARC_IGD810: 7093446Smrj hdl = agp_regdev->agprd_masterhdl; 7103446Smrj err = ldi_ioctl(hdl, I8XX_GET_INFO, (intptr_t)&value1, 7113446Smrj FKIOCTL, kcred, 0); 7123446Smrj if (err) 7133446Smrj return (-1); 7143446Smrj info->agpki_mdevid = value1.igd_devid; 7153446Smrj info->agpki_aperbase = value1.igd_aperbase; 7163446Smrj info->agpki_apersize = value1.igd_apersize; 7173446Smrj 7183446Smrj hdl = agp_regdev->agprd_targethdl; 7193446Smrj err = ldi_ioctl(hdl, I8XX_GET_PREALLOC_SIZE, 7203446Smrj (intptr_t)&prealloc_size, FKIOCTL, kcred, 0); 7213446Smrj if (err) 7223446Smrj return (-1); 7233446Smrj info->agpki_presize = prealloc_size; 7243446Smrj 7253446Smrj break; 7263446Smrj 7273446Smrj case ARC_IGD830: 7283446Smrj hdl = agp_regdev->agprd_masterhdl; 7293446Smrj err = ldi_ioctl(hdl, I8XX_GET_INFO, (intptr_t)&value1, 7303446Smrj FKIOCTL, kcred, 0); 7313446Smrj if (err) 7323446Smrj return (-1); 7333446Smrj info->agpki_mdevid = value1.igd_devid; 7343446Smrj info->agpki_aperbase = value1.igd_aperbase; 7353446Smrj info->agpki_apersize = value1.igd_apersize; 7363446Smrj 7373446Smrj hdl = agp_regdev->agprd_targethdl; 7383446Smrj err = ldi_ioctl(hdl, I8XX_GET_PREALLOC_SIZE, 7393446Smrj (intptr_t)&prealloc_size, FKIOCTL, kcred, 0); 7403446Smrj if (err) 7413446Smrj return (-1); 7423446Smrj 7433446Smrj /* 7443446Smrj * Assume all units are kilobytes unless explicitly 7453446Smrj * stated below: 7463446Smrj * preallocated GTT memory = preallocated memory - GTT size 7473446Smrj * - scratch page size 7483446Smrj * 7493446Smrj * scratch page size = 4 7505036Skz151634 * GTT size (KB) = aperture size (MB) 7513446Smrj * this algorithm came from Xorg source code 7523446Smrj */ 7535036Skz151634 if (prealloc_size > (info->agpki_apersize + 4)) 7545036Skz151634 prealloc_size = 7555036Skz151634 prealloc_size - info->agpki_apersize - 4; 7565036Skz151634 else { 7575036Skz151634 AGPDB_PRINT2((CE_WARN, "lyr_get_info: " 7585036Skz151634 "pre-allocated memory too small, setting to zero")); 7595036Skz151634 prealloc_size = 0; 7605036Skz151634 } 7613446Smrj info->agpki_presize = prealloc_size; 7624478Skz151634 AGPDB_PRINT2((CE_NOTE, 7634478Skz151634 "lyr_get_info: prealloc_size = %ldKB, apersize = %dMB", 7644478Skz151634 prealloc_size, info->agpki_apersize)); 7653446Smrj break; 7663446Smrj case ARC_INTELAGP: 7673446Smrj case ARC_AMD64AGP: 7683446Smrj /* AGP devices */ 7693446Smrj hdl = agp_regdev->agprd_masterhdl; 7703446Smrj err = ldi_ioctl(hdl, AGP_MASTER_GETINFO, 7713446Smrj (intptr_t)&value2, FKIOCTL, kcred, 0); 7723446Smrj if (err) 7733446Smrj return (-1); 7743446Smrj info->agpki_mdevid = value2.iagp_devid; 7753446Smrj info->agpki_mver = value2.iagp_ver; 7763446Smrj info->agpki_mstatus = value2.iagp_mode; 7773446Smrj hdl = agp_regdev->agprd_targethdl; 7783446Smrj err = ldi_ioctl(hdl, AGP_TARGET_GETINFO, 7793446Smrj (intptr_t)&value2, FKIOCTL, kcred, 0); 7803446Smrj if (err) 7813446Smrj return (-1); 7823446Smrj info->agpki_tdevid = value2.iagp_devid; 7833446Smrj info->agpki_tver = value2.iagp_ver; 7843446Smrj info->agpki_tstatus = value2.iagp_mode; 7853446Smrj info->agpki_aperbase = value2.iagp_aperbase; 7863446Smrj info->agpki_apersize = value2.iagp_apersize; 7873446Smrj break; 7883446Smrj default: 7893446Smrj AGPDB_PRINT2((CE_WARN, 7903446Smrj "lyr_get_info: function doesn't work for unknown arc")); 7913446Smrj return (-1); 7923446Smrj } 7933446Smrj if ((info->agpki_apersize >= MAXAPERMEGAS) || 7943446Smrj (info->agpki_apersize == 0) || 7953446Smrj (info->agpki_aperbase == 0)) { 7963446Smrj AGPDB_PRINT2((CE_WARN, 7973446Smrj "lyr_get_info: aperture is not programmed correctly!")); 7983446Smrj return (-1); 7993446Smrj } 8003446Smrj 8013446Smrj return (0); 8023446Smrj } 8033446Smrj 8043446Smrj /* 8053446Smrj * lyr_i8xx_add_to_gtt() 8063446Smrj * 8073446Smrj * Description: 8083446Smrj * This function sets up the integrated video device gtt table 8093446Smrj * via an ioclt to the AGP master driver. 8103446Smrj * 8113446Smrj * Arguments: 8123446Smrj * pg_offset The start entry to be setup 8133446Smrj * keyent Keytable entity pointer 8143446Smrj * agp_regdev AGP devices registration struct pointer 8153446Smrj * 8163446Smrj * Returns: 8173446Smrj * 0 success 8183446Smrj * -1 invalid operations 8193446Smrj */ 8203446Smrj int 8213446Smrj lyr_i8xx_add_to_gtt(uint32_t pg_offset, keytable_ent_t *keyent, 8223446Smrj agp_registered_dev_t *agp_regdev) 8233446Smrj { 8243446Smrj int err = 0; 8253446Smrj int rval; 8263446Smrj ldi_handle_t hdl; 8273446Smrj igd_gtt_seg_t gttseg; 8283446Smrj uint32_t *addrp, i; 8293446Smrj uint32_t npages; 8303446Smrj 8313446Smrj ASSERT(keyent); 8323446Smrj ASSERT(agp_regdev); 8333446Smrj gttseg.igs_pgstart = pg_offset; 8343446Smrj npages = keyent->kte_pages; 8353446Smrj gttseg.igs_npage = npages; 8363446Smrj gttseg.igs_type = keyent->kte_type; 8373446Smrj gttseg.igs_phyaddr = (uint32_t *)kmem_zalloc 8384478Skz151634 (sizeof (uint32_t) * gttseg.igs_npage, KM_SLEEP); 8393446Smrj 8403446Smrj addrp = gttseg.igs_phyaddr; 8413446Smrj for (i = 0; i < npages; i++, addrp++) { 8423446Smrj *addrp = 8433446Smrj (uint32_t)((keyent->kte_pfnarray[i]) << GTT_PAGE_SHIFT); 8443446Smrj } 8453446Smrj 8463446Smrj hdl = agp_regdev->agprd_masterhdl; 8473446Smrj if (ldi_ioctl(hdl, I8XX_ADD2GTT, (intptr_t)>tseg, FKIOCTL, 8483446Smrj kcred, &rval)) { 8493446Smrj AGPDB_PRINT2((CE_WARN, "lyr_i8xx_add_to_gtt: ldi_ioctl error")); 8503446Smrj AGPDB_PRINT2((CE_WARN, "lyr_i8xx_add_to_gtt: pg_start=0x%x", 8513446Smrj gttseg.igs_pgstart)); 8523446Smrj AGPDB_PRINT2((CE_WARN, "lyr_i8xx_add_to_gtt: pages=0x%x", 8533446Smrj gttseg.igs_npage)); 8543446Smrj AGPDB_PRINT2((CE_WARN, "lyr_i8xx_add_to_gtt: type=0x%x", 8553446Smrj gttseg.igs_type)); 8563446Smrj err = -1; 8573446Smrj } 8583446Smrj kmem_free(gttseg.igs_phyaddr, sizeof (uint32_t) * gttseg.igs_npage); 8593446Smrj return (err); 8603446Smrj } 8613446Smrj 8623446Smrj /* 8633446Smrj * lyr_i8xx_remove_from_gtt() 8643446Smrj * 8653446Smrj * Description: 8663446Smrj * This function clears the integrated video device gtt table via 8673446Smrj * an ioctl to the agp master device. 8683446Smrj * 8693446Smrj * Arguments: 8703446Smrj * pg_offset The starting entry to be cleared 8713446Smrj * npage The number of entries to be cleared 8723446Smrj * agp_regdev AGP devices struct pointer 8733446Smrj * 8743446Smrj * Returns: 8753446Smrj * 0 success 8763446Smrj * -1 invalid operations 8773446Smrj */ 8783446Smrj int 8793446Smrj lyr_i8xx_remove_from_gtt(uint32_t pg_offset, uint32_t npage, 8803446Smrj agp_registered_dev_t *agp_regdev) 8813446Smrj { 8823446Smrj int rval; 8833446Smrj ldi_handle_t hdl; 8843446Smrj igd_gtt_seg_t gttseg; 8853446Smrj 8863446Smrj gttseg.igs_pgstart = pg_offset; 8873446Smrj gttseg.igs_npage = npage; 8883446Smrj 8893446Smrj hdl = agp_regdev->agprd_masterhdl; 8903446Smrj if (ldi_ioctl(hdl, I8XX_REM_GTT, (intptr_t)>tseg, FKIOCTL, 8913446Smrj kcred, &rval)) 8923446Smrj return (-1); 8933446Smrj 8943446Smrj return (0); 8953446Smrj } 8963446Smrj 8973446Smrj /* 8983446Smrj * lyr_set_gart_addr() 8993446Smrj * 9003446Smrj * Description: 9013446Smrj * This function puts the gart table physical address in the 9023446Smrj * gart base register. 9033446Smrj * Please refer to gart and gtt table base register format for 9043446Smrj * gart base register format in agpdefs.h. 9053446Smrj * 9063446Smrj * Arguments: 9073446Smrj * phy_base The base physical address of gart table 9083446Smrj * agp_regdev AGP devices registration struct pointer 9093446Smrj * 9103446Smrj * Returns: 9113446Smrj * 0 success 9123446Smrj * -1 failed 9133446Smrj * 9143446Smrj */ 9153446Smrj 9163446Smrj int 9173446Smrj lyr_set_gart_addr(uint64_t phy_base, agp_registered_dev_t *agp_regdev) 9183446Smrj { 9193446Smrj amd64_gart_dev_list_t *gart_list; 9203446Smrj ldi_handle_t hdl; 9213446Smrj int err = 0; 9223446Smrj 9233446Smrj ASSERT(agp_regdev); 9243446Smrj switch (agp_regdev->agprd_arctype) { 9253446Smrj case ARC_IGD810: 9263446Smrj { 9273446Smrj uint32_t base; 9283446Smrj 9293446Smrj ASSERT((phy_base & ~I810_POINTER_MASK) == 0); 9303446Smrj base = (uint32_t)phy_base; 9313446Smrj 9323446Smrj hdl = agp_regdev->agprd_masterhdl; 9333446Smrj err = ldi_ioctl(hdl, I810_SET_GTT_BASE, 9343446Smrj (intptr_t)&base, FKIOCTL, kcred, 0); 9353446Smrj break; 9363446Smrj } 9373446Smrj case ARC_INTELAGP: 9383446Smrj { 9393446Smrj uint32_t addr; 9403446Smrj addr = (uint32_t)phy_base; 9413446Smrj 9423446Smrj ASSERT((phy_base & ~GTT_POINTER_MASK) == 0); 9433446Smrj hdl = agp_regdev->agprd_targethdl; 9443446Smrj err = ldi_ioctl(hdl, AGP_TARGET_SET_GATTADDR, 9453446Smrj (intptr_t)&addr, FKIOCTL, kcred, 0); 9463446Smrj break; 9473446Smrj } 9483446Smrj case ARC_AMD64AGP: 9493446Smrj { 9503446Smrj uint32_t addr; 9513446Smrj 9523446Smrj ASSERT((phy_base & ~AMD64_POINTER_MASK) == 0); 9533446Smrj addr = (uint32_t)((phy_base >> AMD64_GARTBASE_SHIFT) 9543446Smrj & AMD64_GARTBASE_MASK); 9553446Smrj 9563446Smrj for (gart_list = agp_regdev->agprd_cpugarts.gart_dev_list_head; 9573446Smrj gart_list; 9583446Smrj gart_list = gart_list->next) { 9593446Smrj hdl = gart_list->gart_devhdl; 9603446Smrj if (ldi_ioctl(hdl, AMD64_SET_GART_ADDR, 9613446Smrj (intptr_t)&addr, FKIOCTL, kcred, 0)) { 9623446Smrj err = -1; 9633446Smrj break; 9643446Smrj } 9653446Smrj } 9663446Smrj break; 9673446Smrj } 9683446Smrj default: 9693446Smrj err = -1; 9703446Smrj } 9713446Smrj 9723446Smrj if (err) 9733446Smrj return (-1); 9743446Smrj 9753446Smrj return (0); 9763446Smrj } 9773446Smrj 9783446Smrj int 9793446Smrj lyr_set_agp_cmd(uint32_t cmd, agp_registered_dev_t *agp_regdev) 9803446Smrj { 9813446Smrj ldi_handle_t hdl; 9823446Smrj uint32_t command; 9833446Smrj 9843446Smrj ASSERT(agp_regdev); 9853446Smrj command = cmd; 9863446Smrj hdl = agp_regdev->agprd_targethdl; 9873446Smrj if (ldi_ioctl(hdl, AGP_TARGET_SETCMD, 9883446Smrj (intptr_t)&command, FKIOCTL, kcred, 0)) 9893446Smrj return (-1); 9903446Smrj hdl = agp_regdev->agprd_masterhdl; 9913446Smrj if (ldi_ioctl(hdl, AGP_MASTER_SETCMD, 9923446Smrj (intptr_t)&command, FKIOCTL, kcred, 0)) 9933446Smrj return (-1); 9943446Smrj 9953446Smrj return (0); 9963446Smrj } 9973446Smrj 9983446Smrj int 9993446Smrj lyr_config_devices(agp_registered_dev_t *agp_regdev) 10003446Smrj { 10013446Smrj amd64_gart_dev_list_t *gart_list; 10023446Smrj ldi_handle_t hdl; 10033446Smrj int rc = 0; 10043446Smrj 10053446Smrj ASSERT(agp_regdev); 10063446Smrj switch (agp_regdev->agprd_arctype) { 10073446Smrj case ARC_IGD830: 10083446Smrj case ARC_IGD810: 10093446Smrj break; 10103446Smrj case ARC_INTELAGP: 10113446Smrj { 10123446Smrj hdl = agp_regdev->agprd_targethdl; 10133446Smrj rc = ldi_ioctl(hdl, AGP_TARGET_CONFIGURE, 10143446Smrj 0, FKIOCTL, kcred, 0); 10153446Smrj break; 10163446Smrj } 10173446Smrj case ARC_AMD64AGP: 10183446Smrj { 10193446Smrj /* 10203446Smrj * BIOS always shadow registers such like Aperture Base 10213446Smrj * register, Aperture Size Register from the AGP bridge 10223446Smrj * to the AMD64 CPU host bridge. If future BIOSes are broken 10233446Smrj * in this regard, we may need to shadow these registers 10243446Smrj * in driver. 10253446Smrj */ 10263446Smrj 10273446Smrj for (gart_list = agp_regdev->agprd_cpugarts.gart_dev_list_head; 10283446Smrj gart_list; 10293446Smrj gart_list = gart_list->next) { 10303446Smrj hdl = gart_list->gart_devhdl; 10313446Smrj if (ldi_ioctl(hdl, AMD64_CONFIGURE, 10323446Smrj 0, FKIOCTL, kcred, 0)) { 10333446Smrj rc = -1; 10343446Smrj break; 10353446Smrj } 10363446Smrj } 10373446Smrj break; 10383446Smrj } 10393446Smrj default: 10403446Smrj rc = -1; 10413446Smrj } 10423446Smrj 10433446Smrj if (rc) 10443446Smrj return (-1); 10453446Smrj 10463446Smrj return (0); 10473446Smrj } 10483446Smrj 10493446Smrj int 10503446Smrj lyr_unconfig_devices(agp_registered_dev_t *agp_regdev) 10513446Smrj { 10523446Smrj amd64_gart_dev_list_t *gart_list; 10533446Smrj ldi_handle_t hdl; 10543446Smrj int rc = 0; 10553446Smrj 10563446Smrj ASSERT(agp_regdev); 10573446Smrj switch (agp_regdev->agprd_arctype) { 10583446Smrj case ARC_IGD830: 10593446Smrj case ARC_IGD810: 10603446Smrj { 10613446Smrj hdl = agp_regdev->agprd_masterhdl; 10623446Smrj rc = ldi_ioctl(hdl, I8XX_UNCONFIG, 0, FKIOCTL, kcred, 0); 10633446Smrj break; 10643446Smrj } 10653446Smrj case ARC_INTELAGP: 10663446Smrj { 10673446Smrj hdl = agp_regdev->agprd_targethdl; 10683446Smrj rc = ldi_ioctl(hdl, AGP_TARGET_UNCONFIG, 10693446Smrj 0, FKIOCTL, kcred, 0); 10703446Smrj break; 10713446Smrj } 10723446Smrj case ARC_AMD64AGP: 10733446Smrj { 10743446Smrj for (gart_list = agp_regdev->agprd_cpugarts.gart_dev_list_head; 10753446Smrj gart_list; gart_list = gart_list->next) { 10763446Smrj hdl = gart_list->gart_devhdl; 10773446Smrj if (ldi_ioctl(hdl, AMD64_UNCONFIG, 10783446Smrj 0, FKIOCTL, kcred, 0)) { 10793446Smrj rc = -1; 10803446Smrj break; 10813446Smrj } 10823446Smrj } 10833446Smrj break; 10843446Smrj } 10853446Smrj default: 10863446Smrj rc = -1; 10873446Smrj } 10883446Smrj 10893446Smrj if (rc) 10903446Smrj return (-1); 10913446Smrj 10923446Smrj return (0); 10933446Smrj } 10943446Smrj 10953446Smrj /* 10963446Smrj * lyr_flush_gart_cache() 10973446Smrj * 10983446Smrj * Description: 10993446Smrj * This function flushes the GART translation look-aside buffer. All 11003446Smrj * GART translation caches will be flushed after this operation. 11013446Smrj * 11023446Smrj * Arguments: 11033446Smrj * agp_regdev AGP devices struct pointer 11043446Smrj */ 11053446Smrj void 11063446Smrj lyr_flush_gart_cache(agp_registered_dev_t *agp_regdev) 11073446Smrj { 11083446Smrj amd64_gart_dev_list_t *gart_list; 11093446Smrj ldi_handle_t hdl; 11103446Smrj 11113446Smrj ASSERT(agp_regdev); 1112*5376Scg149915 if (agp_regdev->agprd_arctype == ARC_AMD64AGP) { 11133446Smrj for (gart_list = agp_regdev->agprd_cpugarts.gart_dev_list_head; 11143446Smrj gart_list; gart_list = gart_list->next) { 11153446Smrj hdl = gart_list->gart_devhdl; 11163446Smrj (void) ldi_ioctl(hdl, AMD64_FLUSH_GTLB, 11173446Smrj 0, FKIOCTL, kcred, 0); 11183446Smrj } 11193446Smrj } else if (agp_regdev->agprd_arctype == ARC_INTELAGP) { 11203446Smrj hdl = agp_regdev->agprd_targethdl; 11213446Smrj (void) ldi_ioctl(hdl, AGP_TARGET_FLUSH_GTLB, 0, 11223446Smrj FKIOCTL, kcred, 0); 11233446Smrj } 11243446Smrj } 11253446Smrj 11263446Smrj /* 11273446Smrj * get_max_pages() 11283446Smrj * 11293446Smrj * Description: 11303446Smrj * This function compute the total pages allowed for agp aperture 11313446Smrj * based on the ammount of physical pages. 11323446Smrj * The algorithm is: compare the aperture size with 1/4 of total 11333446Smrj * physical pages, and use the smaller one to for the max available 11343446Smrj * pages. 11353446Smrj * 11363446Smrj * Arguments: 11373446Smrj * aper_size system agp aperture size (in MB) 11383446Smrj * 11393446Smrj * Returns: 11403446Smrj * The max possible number of agp memory pages available to users 11413446Smrj */ 11423446Smrj static uint32_t 11433446Smrj get_max_pages(uint32_t aper_size) 11443446Smrj { 11453446Smrj uint32_t i, j; 11463446Smrj 11473446Smrj ASSERT(aper_size <= MAXAPERMEGAS); 11483446Smrj 11493446Smrj i = AGP_MB2PAGES(aper_size); 11503446Smrj j = (physmem >> 2); 11513446Smrj 11523446Smrj return ((i < j) ? i : j); 11533446Smrj } 11543446Smrj 11553446Smrj /* 11563446Smrj * agp_fill_empty_keyent() 11573446Smrj * 11583446Smrj * Description: 11593446Smrj * This function finds a empty key table slot and 11603446Smrj * fills it with a new entity. 11613446Smrj * 11623446Smrj * Arguments: 11633446Smrj * softsate driver soft state pointer 11643446Smrj * entryp new entity data pointer 11653446Smrj * 11663446Smrj * Returns: 11673446Smrj * NULL no key table slot available 11683446Smrj * entryp the new entity slot pointer 11693446Smrj */ 11703446Smrj static keytable_ent_t * 11713446Smrj agp_fill_empty_keyent(agpgart_softstate_t *softstate, keytable_ent_t *entryp) 11723446Smrj { 11733446Smrj int key; 11743446Smrj keytable_ent_t *newentryp; 11753446Smrj 11763446Smrj ASSERT(softstate); 11773446Smrj ASSERT(entryp); 11783446Smrj ASSERT(entryp->kte_memhdl); 11793446Smrj ASSERT(entryp->kte_pfnarray); 11803446Smrj ASSERT(mutex_owned(&softstate->asoft_instmutex)); 11813446Smrj 11823446Smrj for (key = 0; key < AGP_MAXKEYS; key++) { 11833446Smrj newentryp = &softstate->asoft_table[key]; 11843446Smrj if (newentryp->kte_memhdl == NULL) { 11853446Smrj break; 11863446Smrj } 11873446Smrj } 11883446Smrj 11893446Smrj if (key >= AGP_MAXKEYS) { 11903446Smrj AGPDB_PRINT2((CE_WARN, 11913446Smrj "agp_fill_empty_keyent: key table exhausted")); 11923446Smrj return (NULL); 11933446Smrj } 11943446Smrj 11953446Smrj ASSERT(newentryp->kte_pfnarray == NULL); 11963446Smrj bcopy(entryp, newentryp, sizeof (keytable_ent_t)); 11973446Smrj newentryp->kte_key = key; 11983446Smrj 11993446Smrj return (newentryp); 12003446Smrj } 12013446Smrj 12023446Smrj /* 12033446Smrj * agp_find_bound_keyent() 12043446Smrj * 12053446Smrj * Description: 12063446Smrj * This function finds the key table entity by agp aperture page offset. 12073446Smrj * Every keytable entity will have an agp aperture range after the binding 12083446Smrj * operation. 12093446Smrj * 12103446Smrj * Arguments: 12113446Smrj * softsate driver soft state pointer 12123446Smrj * pg_offset agp aperture page offset 12133446Smrj * 12143446Smrj * Returns: 12153446Smrj * NULL no such keytable entity 12163446Smrj * pointer key table entity pointer found 12173446Smrj */ 12183446Smrj static keytable_ent_t * 12193446Smrj agp_find_bound_keyent(agpgart_softstate_t *softstate, uint32_t pg_offset) 12203446Smrj { 12213446Smrj int keycount; 12223446Smrj keytable_ent_t *entryp; 12233446Smrj 12243446Smrj ASSERT(softstate); 12253446Smrj ASSERT(mutex_owned(&softstate->asoft_instmutex)); 12263446Smrj 12273446Smrj for (keycount = 0; keycount < AGP_MAXKEYS; keycount++) { 12283446Smrj entryp = &softstate->asoft_table[keycount]; 12293446Smrj if (entryp->kte_bound == 0) { 12303446Smrj continue; 12313446Smrj } 12323446Smrj 12333446Smrj if (pg_offset < entryp->kte_pgoff) 12343446Smrj continue; 12353446Smrj if (pg_offset >= (entryp->kte_pgoff + entryp->kte_pages)) 12363446Smrj continue; 12373446Smrj 12383446Smrj ASSERT(entryp->kte_memhdl); 12393446Smrj ASSERT(entryp->kte_pfnarray); 12403446Smrj 12413446Smrj return (entryp); 12423446Smrj } 12433446Smrj 12443446Smrj return (NULL); 12453446Smrj } 12463446Smrj 12473446Smrj /* 12483446Smrj * agp_check_off() 12493446Smrj * 12503446Smrj * Description: 12513446Smrj * This function checks whether an AGP aperture range to be bound 12523446Smrj * overlaps with AGP offset already bound. 12533446Smrj * 12543446Smrj * Arguments: 12553446Smrj * entryp key table start entry pointer 12563446Smrj * pg_start AGP range start page offset 12573446Smrj * pg_num pages number to be bound 12583446Smrj * 12593446Smrj * Returns: 12603446Smrj * 0 Does not overlap 12613446Smrj * -1 Overlaps 12623446Smrj */ 12633446Smrj 12643446Smrj static int 12653446Smrj agp_check_off(keytable_ent_t *entryp, uint32_t pg_start, uint32_t pg_num) 12663446Smrj { 12673446Smrj int key; 12683446Smrj uint64_t pg_end; 12693446Smrj uint64_t kpg_end; 12703446Smrj 12713446Smrj ASSERT(entryp); 12723446Smrj 12733446Smrj pg_end = pg_start + pg_num; 12743446Smrj for (key = 0; key < AGP_MAXKEYS; key++) { 12753446Smrj if (!entryp[key].kte_bound) 12763446Smrj continue; 12773446Smrj 12783446Smrj kpg_end = entryp[key].kte_pgoff + entryp[key].kte_pages; 12793446Smrj if (!((pg_end <= entryp[key].kte_pgoff) || 12803446Smrj (pg_start >= kpg_end))) 12813446Smrj break; 12823446Smrj } 12833446Smrj 12843446Smrj if (key == AGP_MAXKEYS) 12853446Smrj return (0); 12863446Smrj else 12873446Smrj return (-1); 12883446Smrj } 12893446Smrj 12903446Smrj static int 12913446Smrj is_controlling_proc(agpgart_softstate_t *st) 12923446Smrj { 12933446Smrj ASSERT(st); 12943446Smrj 12953446Smrj if (!st->asoft_acquired) { 12963446Smrj AGPDB_PRINT2((CE_WARN, 12973446Smrj "ioctl_agpgart_setup: gart not acquired")); 12983446Smrj return (-1); 12993446Smrj } 13003446Smrj if (st->asoft_curpid != ddi_get_pid()) { 13013446Smrj AGPDB_PRINT2((CE_WARN, 13023446Smrj "ioctl_agpgart_release: not controlling process")); 13033446Smrj return (-1); 13043446Smrj } 13053446Smrj 13063446Smrj return (0); 13073446Smrj } 13083446Smrj 13093446Smrj static void release_control(agpgart_softstate_t *st) 13103446Smrj { 13113446Smrj st->asoft_curpid = 0; 13123446Smrj st->asoft_acquired = 0; 13133446Smrj } 13143446Smrj 13153446Smrj static void acquire_control(agpgart_softstate_t *st) 13163446Smrj { 13173446Smrj st->asoft_curpid = ddi_get_pid(); 13183446Smrj st->asoft_acquired = 1; 13193446Smrj } 13203446Smrj 13213446Smrj /* 13223446Smrj * agp_remove_from_gart() 13233446Smrj * 13243446Smrj * Description: 13253446Smrj * This function fills the gart table entries by a given page 13263446Smrj * frame number array and setup the agp aperture page to physical 13273446Smrj * memory page translation. 13283446Smrj * Arguments: 13293446Smrj * pg_offset Starting aperture page to be bound 13303446Smrj * entries the number of pages to be bound 13313446Smrj * acc_hdl GART table dma memory acc handle 13323446Smrj * tablep GART table kernel virtual address 13333446Smrj */ 13343446Smrj static void 13353446Smrj agp_remove_from_gart( 13363446Smrj uint32_t pg_offset, 13373446Smrj uint32_t entries, 13383446Smrj ddi_dma_handle_t dma_hdl, 13393446Smrj uint32_t *tablep) 13403446Smrj { 13413446Smrj uint32_t items = 0; 13423446Smrj uint32_t *entryp; 13433446Smrj 13443446Smrj entryp = tablep + pg_offset; 13453446Smrj while (items < entries) { 13463446Smrj *(entryp + items) = 0; 13473446Smrj items++; 13483446Smrj } 13493446Smrj (void) ddi_dma_sync(dma_hdl, pg_offset * sizeof (uint32_t), 13503446Smrj entries * sizeof (uint32_t), DDI_DMA_SYNC_FORDEV); 13513446Smrj } 13523446Smrj 13533446Smrj /* 13543446Smrj * agp_unbind_key() 13553446Smrj * 13563446Smrj * Description: 13573446Smrj * This function unbinds AGP memory from the gart table. It will clear 13583446Smrj * all the gart entries related to this agp memory. 13593446Smrj * 13603446Smrj * Arguments: 13613446Smrj * softstate driver soft state pointer 13623446Smrj * entryp key table entity pointer 13633446Smrj * 13643446Smrj * Returns: 13653446Smrj * EINVAL invalid key table entity pointer 13663446Smrj * 0 success 13673446Smrj * 13683446Smrj */ 13693446Smrj static int 13703446Smrj agp_unbind_key(agpgart_softstate_t *softstate, keytable_ent_t *entryp) 13713446Smrj { 13723446Smrj int retval = 0; 13733446Smrj 13743446Smrj ASSERT(entryp); 13753446Smrj ASSERT((entryp->kte_key >= 0) && (entryp->kte_key < AGP_MAXKEYS)); 13763446Smrj 13773446Smrj if (!entryp->kte_bound) { 13783446Smrj AGPDB_PRINT2((CE_WARN, 13793446Smrj "agp_unbind_key: key = 0x%x, not bound", 13803446Smrj entryp->kte_key)); 13813446Smrj return (EINVAL); 13823446Smrj } 13833446Smrj if (entryp->kte_refcnt) { 13843446Smrj AGPDB_PRINT2((CE_WARN, 13853446Smrj "agp_unbind_key: memory is exported to users")); 13863446Smrj return (EINVAL); 13873446Smrj } 13883446Smrj 13893446Smrj ASSERT((entryp->kte_pgoff + entryp->kte_pages) <= 13903446Smrj AGP_MB2PAGES(softstate->asoft_info.agpki_apersize)); 13913446Smrj ASSERT((softstate->asoft_devreg.agprd_arctype != ARC_UNKNOWN)); 13923446Smrj 13933446Smrj switch (softstate->asoft_devreg.agprd_arctype) { 13943446Smrj case ARC_IGD810: 13953446Smrj case ARC_IGD830: 13963446Smrj retval = lyr_i8xx_remove_from_gtt( 13973446Smrj entryp->kte_pgoff, entryp->kte_pages, 13983446Smrj &softstate->asoft_devreg); 13993446Smrj if (retval) { 14003446Smrj AGPDB_PRINT2((CE_WARN, 14013446Smrj "agp_unbind_key: Key = 0x%x, clear table error", 14023446Smrj entryp->kte_key)); 14033446Smrj return (EIO); 14043446Smrj } 14053446Smrj break; 14063446Smrj case ARC_INTELAGP: 14073446Smrj case ARC_AMD64AGP: 14083446Smrj agp_remove_from_gart(entryp->kte_pgoff, 14093446Smrj entryp->kte_pages, 14103446Smrj softstate->gart_dma_handle, 14113446Smrj (uint32_t *)softstate->gart_vbase); 14123446Smrj /* Flush GTLB table */ 14133446Smrj lyr_flush_gart_cache(&softstate->asoft_devreg); 14143446Smrj 14153446Smrj break; 14163446Smrj } 14173446Smrj 14183446Smrj entryp->kte_bound = 0; 14193446Smrj 14203446Smrj return (0); 14213446Smrj } 14223446Smrj 14233446Smrj /* 14243446Smrj * agp_dealloc_kmem() 14253446Smrj * 14263446Smrj * Description: 14273446Smrj * This function deallocates dma memory resources for userland 14283446Smrj * applications. 14293446Smrj * 14303446Smrj * Arguments: 14313446Smrj * entryp keytable entity pointer 14323446Smrj */ 14333446Smrj static void 14343446Smrj agp_dealloc_kmem(keytable_ent_t *entryp) 14353446Smrj { 14363446Smrj kmem_free(entryp->kte_pfnarray, sizeof (pfn_t) * entryp->kte_pages); 14373446Smrj entryp->kte_pfnarray = NULL; 14383446Smrj 14393446Smrj (void) ddi_dma_unbind_handle(KMEMP(entryp->kte_memhdl)->kmem_handle); 14403446Smrj KMEMP(entryp->kte_memhdl)->kmem_cookies_num = 0; 14413446Smrj ddi_dma_mem_free(&KMEMP(entryp->kte_memhdl)->kmem_acchdl); 14423446Smrj KMEMP(entryp->kte_memhdl)->kmem_acchdl = NULL; 14433446Smrj KMEMP(entryp->kte_memhdl)->kmem_reallen = 0; 14443446Smrj KMEMP(entryp->kte_memhdl)->kmem_kvaddr = NULL; 14453446Smrj 14463446Smrj ddi_dma_free_handle(&(KMEMP(entryp->kte_memhdl)->kmem_handle)); 14473446Smrj KMEMP(entryp->kte_memhdl)->kmem_handle = NULL; 14483446Smrj 14493446Smrj kmem_free(entryp->kte_memhdl, sizeof (agp_kmem_handle_t)); 14503446Smrj entryp->kte_memhdl = NULL; 14513446Smrj } 14523446Smrj 14533446Smrj /* 14543446Smrj * agp_dealloc_pmem() 14553446Smrj * 14563446Smrj * Description: 14573446Smrj * This function deallocates memory resource for direct mapping to 14583446Smrj * userland applications. 14593446Smrj * 14603446Smrj * Arguments: 14613446Smrj * entryp key table entity pointer 14623446Smrj * 14633446Smrj */ 14643446Smrj static void 14653446Smrj agp_dealloc_pmem(keytable_ent_t *entryp) 14663446Smrj { 14673446Smrj devmap_pmem_free(PMEMP(entryp->kte_memhdl)->pmem_cookie); 14683446Smrj PMEMP(entryp->kte_memhdl)->pmem_cookie = NULL; 14693446Smrj kmem_free(entryp->kte_memhdl, sizeof (agp_pmem_handle_t)); 14703446Smrj entryp->kte_memhdl = NULL; 14713446Smrj 14723446Smrj /* free the page frame number array */ 14733446Smrj kmem_free(entryp->kte_pfnarray, sizeof (pfn_t) * entryp->kte_pages); 14743446Smrj entryp->kte_pfnarray = NULL; 14753446Smrj } 14763446Smrj 14773446Smrj /* 14783446Smrj * agp_dealloc_mem() 14793446Smrj * 14803446Smrj * Description: 14813446Smrj * This function deallocates physical memory resources allocated for 14823446Smrj * userland applications. 14833446Smrj * 14843446Smrj * Arguments: 14853446Smrj * st driver soft state pointer 14863446Smrj * entryp key table entity pointer 14873446Smrj * 14883446Smrj * Returns: 14893446Smrj * -1 not a valid memory type or the memory is mapped by 14903446Smrj * user area applications 14913446Smrj * 0 success 14923446Smrj */ 14933446Smrj static int 14943446Smrj agp_dealloc_mem(agpgart_softstate_t *st, keytable_ent_t *entryp) 14953446Smrj { 14963446Smrj 14973446Smrj ASSERT(entryp); 14983446Smrj ASSERT(st); 14993446Smrj ASSERT(entryp->kte_memhdl); 15003446Smrj ASSERT(mutex_owned(&st->asoft_instmutex)); 15013446Smrj 15023446Smrj /* auto unbind here */ 15033446Smrj if (entryp->kte_bound && !entryp->kte_refcnt) { 15043446Smrj AGPDB_PRINT2((CE_WARN, 15053446Smrj "agp_dealloc_mem: key=0x%x, auto unbind", 15063446Smrj entryp->kte_key)); 15073446Smrj 15083446Smrj /* 15093446Smrj * agp_dealloc_mem may be called indirectly by agp_detach. 15103446Smrj * In the agp_detach function, agpgart_close is already 15113446Smrj * called which will free the gart table. agp_unbind_key 15123446Smrj * will panic if no valid gart table exists. So test if 15133446Smrj * gart table exsits here. 15143446Smrj */ 15153446Smrj if (st->asoft_opened) 15164478Skz151634 (void) agp_unbind_key(st, entryp); 15173446Smrj } 15183446Smrj if (entryp->kte_refcnt) { 15193446Smrj AGPDB_PRINT2((CE_WARN, 15203446Smrj "agp_dealloc_pmem: memory is exported to users")); 15213446Smrj return (-1); 15223446Smrj } 15233446Smrj 15243446Smrj switch (entryp->kte_type) { 15253446Smrj case AGP_NORMAL: 15263446Smrj agp_dealloc_pmem(entryp); 15273446Smrj break; 15283446Smrj case AGP_PHYSICAL: 15293446Smrj agp_dealloc_kmem(entryp); 15303446Smrj break; 15313446Smrj default: 15323446Smrj return (-1); 15333446Smrj } 15343446Smrj 15353446Smrj return (0); 15363446Smrj } 15373446Smrj 15383446Smrj /* 15393446Smrj * agp_del_allkeys() 15403446Smrj * 15413446Smrj * Description: 15423446Smrj * This function calls agp_dealloc_mem to release all the agp memory 15433446Smrj * resource allocated. 15443446Smrj * 15453446Smrj * Arguments: 15463446Smrj * softsate driver soft state pointer 15473446Smrj * Returns: 15483446Smrj * -1 can not free all agp memory 15493446Smrj * 0 success 15503446Smrj * 15513446Smrj */ 15523446Smrj static int 15533446Smrj agp_del_allkeys(agpgart_softstate_t *softstate) 15543446Smrj { 15553446Smrj int key; 15563446Smrj int ret = 0; 15573446Smrj 15583446Smrj ASSERT(softstate); 15593446Smrj for (key = 0; key < AGP_MAXKEYS; key++) { 15603446Smrj if (softstate->asoft_table[key].kte_memhdl != NULL) { 15613446Smrj /* 15623446Smrj * Check if we can free agp memory now. 15633446Smrj * If agp memory is exported to user 15643446Smrj * applications, agp_dealloc_mem will fail. 15653446Smrj */ 15663446Smrj if (agp_dealloc_mem(softstate, 15673446Smrj &softstate->asoft_table[key])) 15683446Smrj ret = -1; 15693446Smrj } 15703446Smrj } 15713446Smrj 15723446Smrj return (ret); 15733446Smrj } 15743446Smrj 15753446Smrj /* 15763446Smrj * pfn2gartentry() 15773446Smrj * 15783446Smrj * Description: 15793446Smrj * This function converts a physical address to GART entry. 15803446Smrj * For AMD64, hardware only support addresses below 40bits, 15813446Smrj * about 1024G physical address, so the largest pfn 15823446Smrj * number is below 28 bits. Please refer to GART and GTT entry 15833446Smrj * format table in agpdefs.h for entry format. Intel IGD only 15843446Smrj * only supports GTT entry below 1G. Intel AGP only supports 15853446Smrj * GART entry below 4G. 15863446Smrj * 15873446Smrj * Arguments: 15883446Smrj * arc_type system agp arc type 15893446Smrj * pfn page frame number 15903446Smrj * itemv the entry item to be returned 15913446Smrj * Returns: 15923446Smrj * -1 not a invalid page frame 15933446Smrj * 0 conversion success 15943446Smrj */ 15953446Smrj static int 15963446Smrj pfn2gartentry(agp_arc_type_t arc_type, pfn_t pfn, uint32_t *itemv) 15973446Smrj { 15983446Smrj uint64_t paddr; 15993446Smrj 16003446Smrj paddr = pfn<<AGP_PAGE_SHIFT; 16013446Smrj 16023446Smrj switch (arc_type) { 16033446Smrj case ARC_INTELAGP: 16043446Smrj { 16053446Smrj /* Only support 32-bit hardware address */ 16063446Smrj if ((paddr & ~AGP_INTEL_POINTER_MASK) != 0) { 16073446Smrj AGPDB_PRINT2((CE_WARN, 16083446Smrj "INTEL AGP Hardware only support 32 bits")); 16093446Smrj return (-1); 16103446Smrj } 16113446Smrj *itemv = (pfn << AGP_PAGE_SHIFT) | AGP_ENTRY_VALID; 16123446Smrj 16133446Smrj break; 16143446Smrj } 16153446Smrj case ARC_AMD64AGP: 16163446Smrj { 16173446Smrj uint32_t value1, value2; 16183446Smrj /* Physaddr should not exceed 40-bit */ 16193446Smrj if ((paddr & ~AMD64_POINTER_MASK) != 0) { 16203446Smrj AGPDB_PRINT2((CE_WARN, 16213446Smrj "AMD64 GART hardware only supoort 40 bits")); 16223446Smrj return (-1); 16233446Smrj } 16243446Smrj value1 = (uint32_t)pfn >> 20; 16253446Smrj value1 <<= 4; 16263446Smrj value2 = (uint32_t)pfn << 12; 16273446Smrj 16283446Smrj *itemv = value1 | value2 | AMD64_ENTRY_VALID; 16293446Smrj break; 16303446Smrj } 16313446Smrj case ARC_IGD810: 16323446Smrj if ((paddr & ~I810_POINTER_MASK) != 0) { 16333446Smrj AGPDB_PRINT2((CE_WARN, 16343446Smrj "Intel i810 only support 30 bits")); 16353446Smrj return (-1); 16363446Smrj } 16373446Smrj break; 16383446Smrj 16393446Smrj case ARC_IGD830: 16403446Smrj if ((paddr & ~GTT_POINTER_MASK) != 0) { 16413446Smrj AGPDB_PRINT2((CE_WARN, 16423446Smrj "Intel IGD only support 32 bits")); 16433446Smrj return (-1); 16443446Smrj } 16453446Smrj break; 16463446Smrj default: 16473446Smrj AGPDB_PRINT2((CE_WARN, 16483446Smrj "pfn2gartentry: arc type = %d, not support", arc_type)); 16493446Smrj return (-1); 16503446Smrj } 16513446Smrj return (0); 16523446Smrj } 16533446Smrj 16543446Smrj /* 16553446Smrj * Check allocated physical pages validity, only called in DEBUG 16563446Smrj * mode. 16573446Smrj */ 16583446Smrj static int 16593446Smrj agp_check_pfns(agp_arc_type_t arc_type, pfn_t *pfnarray, int items) 16603446Smrj { 16613446Smrj int count; 16623446Smrj uint32_t ret; 16633446Smrj 16643446Smrj for (count = 0; count < items; count++) { 16653446Smrj if (pfn2gartentry(arc_type, pfnarray[count], &ret)) 16663446Smrj break; 16673446Smrj } 16683446Smrj if (count < items) 16693446Smrj return (-1); 16703446Smrj else 16713446Smrj return (0); 16723446Smrj } 16733446Smrj 16743446Smrj /* 16753446Smrj * kmem_getpfns() 16763446Smrj * 16773446Smrj * Description: 16783446Smrj * This function gets page frame numbers from dma handle. 16793446Smrj * 16803446Smrj * Arguments: 16813446Smrj * dma_handle dma hanle allocated by ddi_dma_alloc_handle 16823446Smrj * dma_cookip dma cookie pointer 16833446Smrj * cookies_num cookies number 16843446Smrj * pfnarray array to store page frames 16853446Smrj * 16863446Smrj * Returns: 16873446Smrj * 0 success 16883446Smrj */ 16893446Smrj static int 16903446Smrj kmem_getpfns( 16913446Smrj ddi_dma_handle_t dma_handle, 16923446Smrj ddi_dma_cookie_t *dma_cookiep, 16933446Smrj int cookies_num, 16943446Smrj pfn_t *pfnarray) 16953446Smrj { 16963446Smrj int num_cookies; 16973446Smrj int index = 0; 16983446Smrj 16993446Smrj num_cookies = cookies_num; 17003446Smrj 17013446Smrj while (num_cookies > 0) { 17023446Smrj uint64_t ck_startaddr, ck_length, ck_end; 17033446Smrj ck_startaddr = dma_cookiep->dmac_address; 17043446Smrj ck_length = dma_cookiep->dmac_size; 17053446Smrj 17063446Smrj ck_end = ck_startaddr + ck_length; 17073446Smrj while (ck_startaddr < ck_end) { 17083446Smrj pfnarray[index] = (pfn_t)ck_startaddr >> AGP_PAGE_SHIFT; 17093446Smrj ck_startaddr += AGP_PAGE_SIZE; 17103446Smrj index++; 17113446Smrj } 17123446Smrj 17133446Smrj num_cookies--; 17143446Smrj if (num_cookies > 0) { 17153446Smrj ddi_dma_nextcookie(dma_handle, dma_cookiep); 17163446Smrj } 17173446Smrj } 17183446Smrj 17193446Smrj return (0); 17203446Smrj } 17213446Smrj 17223446Smrj static int 17233446Smrj copyinfo(agpgart_softstate_t *softstate, agp_info_t *info) 17243446Smrj { 17253446Smrj switch (softstate->asoft_devreg.agprd_arctype) { 17263446Smrj case ARC_IGD810: 17273446Smrj case ARC_IGD830: 17283446Smrj info->agpi_version.agpv_major = 0; 17293446Smrj info->agpi_version.agpv_minor = 0; 17303446Smrj info->agpi_devid = softstate->asoft_info.agpki_mdevid; 17313446Smrj info->agpi_mode = 0; 17323446Smrj break; 17333446Smrj case ARC_INTELAGP: 17343446Smrj case ARC_AMD64AGP: 17353446Smrj info->agpi_version = softstate->asoft_info.agpki_tver; 17363446Smrj info->agpi_devid = softstate->asoft_info.agpki_tdevid; 17373446Smrj info->agpi_mode = softstate->asoft_info.agpki_tstatus; 17383446Smrj break; 17393446Smrj default: 17403446Smrj AGPDB_PRINT2((CE_WARN, "copyinfo: UNKNOW ARC")); 17413446Smrj return (-1); 17423446Smrj } 17433446Smrj /* 17443446Smrj * 64bit->32bit conversion possible 17453446Smrj */ 17463446Smrj info->agpi_aperbase = softstate->asoft_info.agpki_aperbase; 17473446Smrj info->agpi_apersize = softstate->asoft_info.agpki_apersize; 17483446Smrj info->agpi_pgtotal = softstate->asoft_pgtotal; 17493446Smrj info->agpi_pgsystem = info->agpi_pgtotal; 17503446Smrj info->agpi_pgused = softstate->asoft_pgused; 17513446Smrj 17523446Smrj return (0); 17533446Smrj } 17543446Smrj 17553446Smrj static uint32_t 17563446Smrj agp_v2_setup(uint32_t tstatus, uint32_t mstatus, uint32_t mode) 17573446Smrj { 17583446Smrj uint32_t cmd; 17593446Smrj int rq, sba, over4g, fw, rate; 17603446Smrj 17613446Smrj /* 17623446Smrj * tstatus: target device status 17633446Smrj * mstatus: master device status 17643446Smrj * mode: the agp mode to be sent 17653446Smrj */ 17663446Smrj 17673446Smrj /* 17683446Smrj * RQ - Request Queue size 17693446Smrj * set RQ to the min of mode and tstatus 17703446Smrj * if mode set a RQ larger than hardware can support, 17713446Smrj * use the max RQ which hardware can support. 17723446Smrj * tstatus & AGPSTAT_RQ_MASK is the max RQ hardware can support 17733446Smrj * Corelogic will enqueue agp transaction 17743446Smrj */ 17753446Smrj rq = mode & AGPSTAT_RQ_MASK; 17763446Smrj if ((tstatus & AGPSTAT_RQ_MASK) < rq) 17773446Smrj rq = tstatus & AGPSTAT_RQ_MASK; 17783446Smrj 17793446Smrj /* 17803446Smrj * SBA - Sideband Addressing 17813446Smrj * 17823446Smrj * Sideband Addressing provides an additional bus to pass requests 17833446Smrj * (address and command) to the target from the master. 17843446Smrj * 17853446Smrj * set SBA if all three support it 17863446Smrj */ 17873446Smrj sba = (tstatus & AGPSTAT_SBA) & (mstatus & AGPSTAT_SBA) 17884478Skz151634 & (mode & AGPSTAT_SBA); 17893446Smrj 17903446Smrj /* set OVER4G if all three support it */ 17913446Smrj over4g = (tstatus & AGPSTAT_OVER4G) & (mstatus & AGPSTAT_OVER4G) 17924478Skz151634 & (mode & AGPSTAT_OVER4G); 17933446Smrj 17943446Smrj /* 17953446Smrj * FW - fast write 17963446Smrj * 17973446Smrj * acceleration of memory write transactions from the corelogic to the 17983446Smrj * A.G.P. master device acting like a PCI target. 17993446Smrj * 18003446Smrj * set FW if all three support it 18013446Smrj */ 18023446Smrj fw = (tstatus & AGPSTAT_FW) & (mstatus & AGPSTAT_FW) 18034478Skz151634 & (mode & AGPSTAT_FW); 18043446Smrj 18053446Smrj /* 18063446Smrj * figure out the max rate 18073446Smrj * AGP v2 support: 4X, 2X, 1X speed 18083446Smrj * status bit meaning 18093446Smrj * --------------------------------------------- 18103446Smrj * 7:3 others 18113446Smrj * 3 0 stand for V2 support 18123446Smrj * 0:2 001:1X, 010:2X, 100:4X 18133446Smrj * ---------------------------------------------- 18143446Smrj */ 18153446Smrj rate = (tstatus & AGPSTAT_RATE_MASK) & (mstatus & AGPSTAT_RATE_MASK) 18164478Skz151634 & (mode & AGPSTAT_RATE_MASK); 18173446Smrj if (rate & AGP2_RATE_4X) 18183446Smrj rate = AGP2_RATE_4X; 18193446Smrj else if (rate & AGP2_RATE_2X) 18203446Smrj rate = AGP2_RATE_2X; 18213446Smrj else 18223446Smrj rate = AGP2_RATE_1X; 18233446Smrj 18243446Smrj cmd = rq | sba | over4g | fw | rate; 18253446Smrj /* enable agp mode */ 18263446Smrj cmd |= AGPCMD_AGPEN; 18273446Smrj 18283446Smrj return (cmd); 18293446Smrj } 18303446Smrj 18313446Smrj static uint32_t 18323446Smrj agp_v3_setup(uint32_t tstatus, uint32_t mstatus, uint32_t mode) 18333446Smrj { 18343446Smrj uint32_t cmd = 0; 18353446Smrj uint32_t rq, arqsz, cal, sba, over4g, fw, rate; 18363446Smrj 18373446Smrj /* 18383446Smrj * tstatus: target device status 18393446Smrj * mstatus: master device status 18403446Smrj * mode: the agp mode to be set 18413446Smrj */ 18423446Smrj 18433446Smrj /* 18443446Smrj * RQ - Request Queue size 18453446Smrj * Set RQ to the min of mode and tstatus 18463446Smrj * If mode set a RQ larger than hardware can support, 18473446Smrj * use the max RQ which hardware can support. 18483446Smrj * tstatus & AGPSTAT_RQ_MASK is the max RQ hardware can support 18493446Smrj * Corelogic will enqueue agp transaction; 18503446Smrj */ 18513446Smrj rq = mode & AGPSTAT_RQ_MASK; 18523446Smrj if ((tstatus & AGPSTAT_RQ_MASK) < rq) 18533446Smrj rq = tstatus & AGPSTAT_RQ_MASK; 18543446Smrj 18553446Smrj /* 18563446Smrj * ARQSZ - Asynchronous Request Queue size 18573446Smrj * Set the value equal to tstatus. 18583446Smrj * Don't allow the mode register to override values 18593446Smrj */ 18603446Smrj arqsz = tstatus & AGPSTAT_ARQSZ_MASK; 18613446Smrj 18623446Smrj /* 18633446Smrj * CAL - Calibration cycle 18643446Smrj * Set to the min of tstatus and mstatus 18653446Smrj * Don't allow override by mode register 18663446Smrj */ 18673446Smrj cal = tstatus & AGPSTAT_CAL_MASK; 18683446Smrj if ((mstatus & AGPSTAT_CAL_MASK) < cal) 18693446Smrj cal = mstatus & AGPSTAT_CAL_MASK; 18703446Smrj 18713446Smrj /* 18723446Smrj * SBA - Sideband Addressing 18733446Smrj * 18743446Smrj * Sideband Addressing provides an additional bus to pass requests 18753446Smrj * (address and command) to the target from the master. 18763446Smrj * 18773446Smrj * SBA in agp v3.0 must be set 18783446Smrj */ 18793446Smrj sba = AGPCMD_SBAEN; 18803446Smrj 18813446Smrj /* GART64B is not set since no hardware supports it now */ 18823446Smrj 18833446Smrj /* Set OVER4G if all three support it */ 18843446Smrj over4g = (tstatus & AGPSTAT_OVER4G) & (mstatus & AGPSTAT_OVER4G) 18854478Skz151634 & (mode & AGPSTAT_OVER4G); 18863446Smrj 18873446Smrj /* 18883446Smrj * FW - fast write 18893446Smrj * 18903446Smrj * Acceleration of memory write transactions from the corelogic to the 18913446Smrj * A.G.P. master device acting like a PCI target. 18923446Smrj * 18933446Smrj * Always set FW in AGP 3.0 18943446Smrj */ 18953446Smrj fw = (tstatus & AGPSTAT_FW) & (mstatus & AGPSTAT_FW) 18964478Skz151634 & (mode & AGPSTAT_FW); 18973446Smrj 18983446Smrj /* 18993446Smrj * Figure out the max rate 19003446Smrj * 19013446Smrj * AGP v3 support: 8X, 4X speed 19023446Smrj * 19033446Smrj * status bit meaning 19043446Smrj * --------------------------------------------- 19053446Smrj * 7:3 others 19063446Smrj * 3 1 stand for V3 support 19073446Smrj * 0:2 001:4X, 010:8X, 011:4X,8X 19083446Smrj * ---------------------------------------------- 19093446Smrj */ 19103446Smrj rate = (tstatus & AGPSTAT_RATE_MASK) & (mstatus & AGPSTAT_RATE_MASK) 19114478Skz151634 & (mode & AGPSTAT_RATE_MASK); 19123446Smrj if (rate & AGP3_RATE_8X) 19133446Smrj rate = AGP3_RATE_8X; 19143446Smrj else 19153446Smrj rate = AGP3_RATE_4X; 19163446Smrj 19173446Smrj cmd = rq | arqsz | cal | sba | over4g | fw | rate; 19183446Smrj /* Enable AGP mode */ 19193446Smrj cmd |= AGPCMD_AGPEN; 19203446Smrj 19213446Smrj return (cmd); 19223446Smrj } 19233446Smrj 19243446Smrj static int 19253446Smrj agp_setup(agpgart_softstate_t *softstate, uint32_t mode) 19263446Smrj { 19273446Smrj uint32_t tstatus, mstatus; 19283446Smrj uint32_t agp_mode; 19293446Smrj 19303446Smrj tstatus = softstate->asoft_info.agpki_tstatus; 19313446Smrj mstatus = softstate->asoft_info.agpki_mstatus; 19323446Smrj 19333446Smrj /* 19343446Smrj * There are three kinds of AGP mode. AGP mode 1.0, 2.0, 3.0 19353446Smrj * AGP mode 2.0 is fully compatible with AGP mode 1.0, so we 19363446Smrj * only check 2.0 and 3.0 mode. AGP 3.0 device can work in 19373446Smrj * two AGP 2.0 or AGP 3.0 mode. By checking AGP status register, 19383446Smrj * we can get which mode it is working at. The working mode of 19393446Smrj * AGP master and AGP target must be consistent. That is, both 19403446Smrj * of them must work on AGP 3.0 mode or AGP 2.0 mode. 19413446Smrj */ 19423446Smrj if ((softstate->asoft_info.agpki_tver.agpv_major == 3) && 19433446Smrj (tstatus & AGPSTAT_MODE3)) { 19443446Smrj /* Master device should be 3.0 mode, too */ 19453446Smrj if ((softstate->asoft_info.agpki_mver.agpv_major != 3) || 19463446Smrj ((mstatus & AGPSTAT_MODE3) == 0)) 19473446Smrj return (EIO); 19483446Smrj 19493446Smrj agp_mode = agp_v3_setup(tstatus, mstatus, mode); 19503446Smrj /* Write to the AGPCMD register of target and master devices */ 19513446Smrj if (lyr_set_agp_cmd(agp_mode, 19523446Smrj &softstate->asoft_devreg)) 19533446Smrj return (EIO); 19543446Smrj 19553446Smrj softstate->asoft_mode = agp_mode; 19563446Smrj 19573446Smrj return (0); 19583446Smrj } 19593446Smrj 19603446Smrj /* 19613446Smrj * If agp taget device doesn't work in AGP 3.0 mode, 19623446Smrj * it must work in AGP 2.0 mode. And make sure 19633446Smrj * master device work in AGP 2.0 mode too 19643446Smrj */ 19653446Smrj if ((softstate->asoft_info.agpki_mver.agpv_major == 3) && 19663446Smrj (mstatus & AGPSTAT_MODE3)) 19673446Smrj return (EIO); 19683446Smrj 19693446Smrj agp_mode = agp_v2_setup(tstatus, mstatus, mode); 19703446Smrj if (lyr_set_agp_cmd(agp_mode, &softstate->asoft_devreg)) 19713446Smrj return (EIO); 19723446Smrj softstate->asoft_mode = agp_mode; 19733446Smrj 19743446Smrj return (0); 19753446Smrj } 19763446Smrj 19773446Smrj /* 19783446Smrj * agp_alloc_pmem() 19793446Smrj * 19803446Smrj * Description: 19813446Smrj * This function allocates physical memory for direct mapping to userland 19823446Smrj * applications. 19833446Smrj * 19843446Smrj * Arguments: 19853446Smrj * softsate driver soft state pointer 19863446Smrj * length memory size 19873446Smrj * type AGP_NORMAL: normal agp memory, AGP_PHISYCAL: specical 19883446Smrj * memory type for intel i810 IGD 19893446Smrj * 19903446Smrj * Returns: 19913446Smrj * entryp new key table entity pointer 19923446Smrj * NULL no key table slot available 19933446Smrj */ 19943446Smrj static keytable_ent_t * 19953446Smrj agp_alloc_pmem(agpgart_softstate_t *softstate, size_t length, int type) 19963446Smrj { 19973446Smrj keytable_ent_t keyentry; 19983446Smrj keytable_ent_t *entryp; 19993446Smrj 20003446Smrj ASSERT(AGP_ALIGNED(length)); 20013446Smrj bzero(&keyentry, sizeof (keytable_ent_t)); 20023446Smrj 20033446Smrj keyentry.kte_pages = AGP_BYTES2PAGES(length); 20043446Smrj keyentry.kte_type = type; 20053446Smrj 20063446Smrj keyentry.kte_memhdl = 20073446Smrj (agp_pmem_handle_t *)kmem_zalloc(sizeof (agp_pmem_handle_t), 20083446Smrj KM_SLEEP); 20093446Smrj 20103446Smrj if (devmap_pmem_alloc(length, 20113446Smrj PMEM_SLEEP, 20123446Smrj &PMEMP(keyentry.kte_memhdl)->pmem_cookie) != DDI_SUCCESS) 20133446Smrj goto err1; 20143446Smrj 20153446Smrj keyentry.kte_pfnarray = (pfn_t *)kmem_zalloc(sizeof (pfn_t) * 20163446Smrj keyentry.kte_pages, KM_SLEEP); 20173446Smrj 20183446Smrj if (devmap_pmem_getpfns( 20193446Smrj PMEMP(keyentry.kte_memhdl)->pmem_cookie, 20203446Smrj 0, keyentry.kte_pages, keyentry.kte_pfnarray) != DDI_SUCCESS) { 20213446Smrj AGPDB_PRINT2((CE_WARN, 20223446Smrj "agp_alloc_pmem: devmap_map_getpfns failed")); 20233446Smrj goto err2; 20243446Smrj } 20253446Smrj ASSERT(!agp_check_pfns(softstate->asoft_devreg.agprd_arctype, 20263446Smrj keyentry.kte_pfnarray, keyentry.kte_pages)); 20273446Smrj entryp = agp_fill_empty_keyent(softstate, &keyentry); 20283446Smrj 20293446Smrj if (!entryp) { 20303446Smrj AGPDB_PRINT2((CE_WARN, 20313446Smrj "agp_alloc_pmem: agp_fill_empty_keyent error")); 20323446Smrj goto err2; 20333446Smrj } 20343446Smrj ASSERT((entryp->kte_key >= 0) && (entryp->kte_key < AGP_MAXKEYS)); 20353446Smrj 20363446Smrj return (entryp); 20373446Smrj 20383446Smrj err2: 20393446Smrj kmem_free(keyentry.kte_pfnarray, sizeof (pfn_t) * keyentry.kte_pages); 20403446Smrj keyentry.kte_pfnarray = NULL; 20413446Smrj devmap_pmem_free(PMEMP(keyentry.kte_memhdl)->pmem_cookie); 20423446Smrj PMEMP(keyentry.kte_memhdl)->pmem_cookie = NULL; 20433446Smrj err1: 20443446Smrj kmem_free(keyentry.kte_memhdl, sizeof (agp_pmem_handle_t)); 20453446Smrj keyentry.kte_memhdl = NULL; 20463446Smrj 20473446Smrj return (NULL); 20483446Smrj 20493446Smrj } 20503446Smrj 20513446Smrj /* 20523446Smrj * agp_alloc_kmem() 20533446Smrj * 20543446Smrj * Description: 20553446Smrj * This function allocates physical memory for userland applications 20563446Smrj * by ddi interfaces. This function can only be called to allocate 20573446Smrj * small phsyical contiguous pages, usually tens of kilobytes. 20583446Smrj * 20593446Smrj * Arguments: 20603446Smrj * softsate driver soft state pointer 20613446Smrj * length memory size 20623446Smrj * 20633446Smrj * Returns: 20643446Smrj * entryp new keytable entity pointer 20653446Smrj * NULL no keytable slot available or no physical 20663446Smrj * memory available 20673446Smrj */ 20683446Smrj static keytable_ent_t * 20693446Smrj agp_alloc_kmem(agpgart_softstate_t *softstate, size_t length) 20703446Smrj { 20713446Smrj keytable_ent_t keyentry; 20723446Smrj keytable_ent_t *entryp; 20733446Smrj int ret; 20743446Smrj 20753446Smrj ASSERT(AGP_ALIGNED(length)); 20763446Smrj 20773446Smrj bzero(&keyentry, sizeof (keytable_ent_t)); 20783446Smrj 20793446Smrj keyentry.kte_pages = AGP_BYTES2PAGES(length); 20803446Smrj keyentry.kte_type = AGP_PHYSICAL; 20813446Smrj 20823446Smrj /* 20833446Smrj * Set dma_attr_sgllen to assure contiguous physical pages 20843446Smrj */ 20853446Smrj agpgart_dma_attr.dma_attr_sgllen = 1; 20863446Smrj 20873446Smrj /* 4k size pages */ 20883446Smrj keyentry.kte_memhdl = kmem_zalloc(sizeof (agp_kmem_handle_t), KM_SLEEP); 20893446Smrj 20903446Smrj if (ddi_dma_alloc_handle(softstate->asoft_dip, 20913446Smrj &agpgart_dma_attr, 20923446Smrj DDI_DMA_SLEEP, NULL, 20933446Smrj &(KMEMP(keyentry.kte_memhdl)->kmem_handle))) { 20943446Smrj AGPDB_PRINT2((CE_WARN, 20953446Smrj "agp_alloc_kmem: ddi_dma_allco_hanlde error")); 20963446Smrj goto err4; 20973446Smrj } 20983446Smrj 20993446Smrj if ((ret = ddi_dma_mem_alloc( 21003446Smrj KMEMP(keyentry.kte_memhdl)->kmem_handle, 21013446Smrj length, 21023446Smrj &gart_dev_acc_attr, 21033446Smrj DDI_DMA_CONSISTENT, 21043446Smrj DDI_DMA_SLEEP, NULL, 21053446Smrj &KMEMP(keyentry.kte_memhdl)->kmem_kvaddr, 21063446Smrj &KMEMP(keyentry.kte_memhdl)->kmem_reallen, 21073446Smrj &KMEMP(keyentry.kte_memhdl)->kmem_acchdl)) != 0) { 21083446Smrj AGPDB_PRINT2((CE_WARN, 21093446Smrj "agp_alloc_kmem: ddi_dma_mem_alloc error")); 21103446Smrj 21113446Smrj goto err3; 21123446Smrj } 21133446Smrj 21143446Smrj ret = ddi_dma_addr_bind_handle( 21153446Smrj KMEMP(keyentry.kte_memhdl)->kmem_handle, 21163446Smrj NULL, 21173446Smrj KMEMP(keyentry.kte_memhdl)->kmem_kvaddr, 21183446Smrj length, 21193446Smrj DDI_DMA_RDWR | DDI_DMA_CONSISTENT, 21203446Smrj DDI_DMA_SLEEP, 21213446Smrj NULL, 21223446Smrj &KMEMP(keyentry.kte_memhdl)->kmem_dcookie, 21233446Smrj &KMEMP(keyentry.kte_memhdl)->kmem_cookies_num); 21243446Smrj 21253446Smrj /* 21263446Smrj * Even dma_attr_sgllen = 1, ddi_dma_addr_bind_handle may return more 21273446Smrj * than one cookie, we check this in the if statement. 21283446Smrj */ 21293446Smrj 21303446Smrj if ((ret != DDI_DMA_MAPPED) || 21313446Smrj (KMEMP(keyentry.kte_memhdl)->kmem_cookies_num != 1)) { 21323446Smrj AGPDB_PRINT2((CE_WARN, 21333446Smrj "agp_alloc_kmem: can not alloc physical memory properly")); 21343446Smrj goto err2; 21353446Smrj } 21363446Smrj 21373446Smrj keyentry.kte_pfnarray = (pfn_t *)kmem_zalloc(sizeof (pfn_t) * 21383446Smrj keyentry.kte_pages, KM_SLEEP); 21393446Smrj 21403446Smrj if (kmem_getpfns( 21413446Smrj KMEMP(keyentry.kte_memhdl)->kmem_handle, 21423446Smrj &KMEMP(keyentry.kte_memhdl)->kmem_dcookie, 21433446Smrj KMEMP(keyentry.kte_memhdl)->kmem_cookies_num, 21443446Smrj keyentry.kte_pfnarray)) { 21453446Smrj AGPDB_PRINT2((CE_WARN, "agp_alloc_kmem: get pfn array error")); 21463446Smrj goto err1; 21473446Smrj } 21483446Smrj 21493446Smrj ASSERT(!agp_check_pfns(softstate->asoft_devreg.agprd_arctype, 21503446Smrj keyentry.kte_pfnarray, keyentry.kte_pages)); 21513446Smrj entryp = agp_fill_empty_keyent(softstate, &keyentry); 21523446Smrj if (!entryp) { 21533446Smrj AGPDB_PRINT2((CE_WARN, 21543446Smrj "agp_alloc_kmem: agp_fill_empty_keyent error")); 21553446Smrj 21563446Smrj goto err1; 21573446Smrj } 21583446Smrj ASSERT((entryp->kte_key >= 0) && (entryp->kte_key < AGP_MAXKEYS)); 21593446Smrj 21603446Smrj return (entryp); 21613446Smrj 21623446Smrj err1: 21633446Smrj kmem_free(keyentry.kte_pfnarray, sizeof (pfn_t) * keyentry.kte_pages); 21643446Smrj keyentry.kte_pfnarray = NULL; 21653446Smrj (void) ddi_dma_unbind_handle(KMEMP(keyentry.kte_memhdl)->kmem_handle); 21663446Smrj KMEMP(keyentry.kte_memhdl)->kmem_cookies_num = 0; 21673446Smrj err2: 21683446Smrj ddi_dma_mem_free(&KMEMP(keyentry.kte_memhdl)->kmem_acchdl); 21693446Smrj KMEMP(keyentry.kte_memhdl)->kmem_acchdl = NULL; 21703446Smrj KMEMP(keyentry.kte_memhdl)->kmem_reallen = 0; 21713446Smrj KMEMP(keyentry.kte_memhdl)->kmem_kvaddr = NULL; 21723446Smrj err3: 21733446Smrj ddi_dma_free_handle(&(KMEMP(keyentry.kte_memhdl)->kmem_handle)); 21743446Smrj KMEMP(keyentry.kte_memhdl)->kmem_handle = NULL; 21753446Smrj err4: 21763446Smrj kmem_free(keyentry.kte_memhdl, sizeof (agp_kmem_handle_t)); 21773446Smrj keyentry.kte_memhdl = NULL; 21783446Smrj return (NULL); 21793446Smrj 21803446Smrj } 21813446Smrj 21823446Smrj /* 21833446Smrj * agp_alloc_mem() 21843446Smrj * 21853446Smrj * Description: 21863446Smrj * This function allocate physical memory for userland applications, 21873446Smrj * in order to save kernel virtual space, we use the direct mapping 21883446Smrj * memory interface if it is available. 21893446Smrj * 21903446Smrj * Arguments: 21913446Smrj * st driver soft state pointer 21923446Smrj * length memory size 21933446Smrj * type AGP_NORMAL: normal agp memory, AGP_PHISYCAL: specical 21943446Smrj * memory type for intel i810 IGD 21953446Smrj * 21963446Smrj * Returns: 21973446Smrj * NULL Invalid memory type or can not allocate memory 21983446Smrj * Keytable entry pointer returned by agp_alloc_kmem or agp_alloc_pmem 21993446Smrj */ 22003446Smrj static keytable_ent_t * 22013446Smrj agp_alloc_mem(agpgart_softstate_t *st, size_t length, int type) 22023446Smrj { 22033446Smrj 22043446Smrj /* 22053446Smrj * AGP_PHYSICAL type require contiguous physical pages exported 22063446Smrj * to X drivers, like i810 HW cursor, ARGB cursor. the number of 22073446Smrj * pages needed is usuallysmall and contiguous, 4K, 16K. So we 22083446Smrj * use DDI interface to allocated such memory. And X use xsvc 22093446Smrj * drivers to map this memory into its own address space. 22103446Smrj */ 22113446Smrj ASSERT(st); 22123446Smrj 22133446Smrj switch (type) { 22143446Smrj case AGP_NORMAL: 22153446Smrj return (agp_alloc_pmem(st, length, type)); 22163446Smrj case AGP_PHYSICAL: 22173446Smrj return (agp_alloc_kmem(st, length)); 22183446Smrj default: 22193446Smrj return (NULL); 22203446Smrj } 22213446Smrj } 22223446Smrj 22233446Smrj /* 22243446Smrj * free_gart_table() 22253446Smrj * 22263446Smrj * Description: 22273446Smrj * This function frees the gart table memory allocated by driver. 22283446Smrj * Must disable gart table before calling this function. 22293446Smrj * 22303446Smrj * Arguments: 22313446Smrj * softstate driver soft state pointer 22323446Smrj * 22333446Smrj */ 22343446Smrj static void 22353446Smrj free_gart_table(agpgart_softstate_t *st) 22363446Smrj { 22373446Smrj 22383446Smrj if (st->gart_dma_handle == NULL) 22393446Smrj return; 22403446Smrj 22413446Smrj (void) ddi_dma_unbind_handle(st->gart_dma_handle); 22423446Smrj ddi_dma_mem_free(&st->gart_dma_acc_handle); 22433446Smrj st->gart_dma_acc_handle = NULL; 22443446Smrj ddi_dma_free_handle(&st->gart_dma_handle); 22453446Smrj st->gart_dma_handle = NULL; 22463446Smrj st->gart_vbase = 0; 22473446Smrj st->gart_size = 0; 22483446Smrj } 22493446Smrj 22503446Smrj /* 22513446Smrj * alloc_gart_table() 22523446Smrj * 22533446Smrj * Description: 22543446Smrj * This function allocates one physical continuous gart table. 22553446Smrj * INTEL integrated video device except i810 have their special 22563446Smrj * video bios; No need to allocate gart table for them. 22573446Smrj * 22583446Smrj * Arguments: 22593446Smrj * st driver soft state pointer 22603446Smrj * 22613446Smrj * Returns: 22623446Smrj * 0 success 22633446Smrj * -1 can not allocate gart tabl 22643446Smrj */ 22653446Smrj static int 22663446Smrj alloc_gart_table(agpgart_softstate_t *st) 22673446Smrj { 22683446Smrj int num_pages; 22693446Smrj size_t table_size; 22703446Smrj int ret = DDI_SUCCESS; 22713446Smrj ddi_dma_cookie_t cookie; 22723446Smrj uint32_t num_cookies; 22733446Smrj 22743446Smrj num_pages = AGP_MB2PAGES(st->asoft_info.agpki_apersize); 22753446Smrj 22763446Smrj /* 22773446Smrj * Only 40-bit maximum physical memory is supported by today's 22783446Smrj * AGP hardware (32-bit gart tables can hold 40-bit memory addresses). 22793446Smrj * No one supports 64-bit gart entries now, so the size of gart 22803446Smrj * entries defaults to 32-bit though AGP3.0 specifies the possibility 22813446Smrj * of 64-bit gart entries. 22823446Smrj */ 22833446Smrj 22843446Smrj table_size = num_pages * (sizeof (uint32_t)); 22853446Smrj 22863446Smrj /* 22873446Smrj * Only AMD64 can put gart table above 4G, 40 bits at maximum 22883446Smrj */ 2289*5376Scg149915 if (st->asoft_devreg.agprd_arctype == ARC_AMD64AGP) 22903446Smrj garttable_dma_attr.dma_attr_addr_hi = 0xffffffffffLL; 22913446Smrj else 22923446Smrj garttable_dma_attr.dma_attr_addr_hi = 0xffffffffU; 22933446Smrj /* Allocate physical continuous page frame for gart table */ 22943446Smrj if (ret = ddi_dma_alloc_handle(st->asoft_dip, 22953446Smrj &garttable_dma_attr, 22963446Smrj DDI_DMA_SLEEP, 22973446Smrj NULL, &st->gart_dma_handle)) { 22983446Smrj AGPDB_PRINT2((CE_WARN, 22993446Smrj "alloc_gart_table: ddi_dma_alloc_handle failed")); 23003446Smrj goto err3; 23013446Smrj } 23023446Smrj 23033446Smrj if (ret = ddi_dma_mem_alloc(st->gart_dma_handle, 23044478Skz151634 table_size, 23054478Skz151634 &gart_dev_acc_attr, 23064478Skz151634 DDI_DMA_CONSISTENT, 23074478Skz151634 DDI_DMA_SLEEP, NULL, 23084478Skz151634 &st->gart_vbase, 23094478Skz151634 &st->gart_size, 23104478Skz151634 &st->gart_dma_acc_handle)) { 23113446Smrj AGPDB_PRINT2((CE_WARN, 23123446Smrj "alloc_gart_table: ddi_dma_mem_alloc failed")); 23133446Smrj goto err2; 23143446Smrj 23153446Smrj } 23163446Smrj 23173446Smrj ret = ddi_dma_addr_bind_handle(st->gart_dma_handle, 23184478Skz151634 NULL, st->gart_vbase, 23194478Skz151634 table_size, 23204478Skz151634 DDI_DMA_RDWR | DDI_DMA_CONSISTENT, 23214478Skz151634 DDI_DMA_SLEEP, NULL, 23224478Skz151634 &cookie, &num_cookies); 23233446Smrj 23243446Smrj st->gart_pbase = cookie.dmac_address; 23253446Smrj 23263446Smrj if ((ret != DDI_DMA_MAPPED) || (num_cookies != 1)) { 23273446Smrj if (num_cookies > 1) 23283446Smrj (void) ddi_dma_unbind_handle(st->gart_dma_handle); 23293446Smrj AGPDB_PRINT2((CE_WARN, 23303446Smrj "alloc_gart_table: alloc contiguous phys memory failed")); 23313446Smrj goto err1; 23323446Smrj } 23333446Smrj 23343446Smrj return (0); 23353446Smrj err1: 23363446Smrj ddi_dma_mem_free(&st->gart_dma_acc_handle); 23373446Smrj st->gart_dma_acc_handle = NULL; 23383446Smrj err2: 23393446Smrj ddi_dma_free_handle(&st->gart_dma_handle); 23403446Smrj st->gart_dma_handle = NULL; 23413446Smrj err3: 23423446Smrj st->gart_pbase = 0; 23433446Smrj st->gart_size = 0; 23443446Smrj st->gart_vbase = 0; 23453446Smrj 23463446Smrj return (-1); 23473446Smrj } 23483446Smrj 23493446Smrj /* 23503446Smrj * agp_add_to_gart() 23513446Smrj * 23523446Smrj * Description: 23533446Smrj * This function fills the gart table entries by a given page frame number 23543446Smrj * array and set up the agp aperture page to physical memory page 23553446Smrj * translation. 23563446Smrj * Arguments: 23573446Smrj * type valid sytem arc types ARC_AMD64AGP, ARC_INTELAGP, 23583446Smrj * ARC_AMD64AGP 23593446Smrj * pfnarray allocated physical page frame number array 23603446Smrj * pg_offset agp aperture start page to be bound 23613446Smrj * entries the number of pages to be bound 23623446Smrj * dma_hdl gart table dma memory handle 23633446Smrj * tablep gart table kernel virtual address 23643446Smrj * Returns: 23653446Smrj * -1 failed 23663446Smrj * 0 success 23673446Smrj */ 23683446Smrj static int 23693446Smrj agp_add_to_gart( 23703446Smrj agp_arc_type_t type, 23713446Smrj pfn_t *pfnarray, 23723446Smrj uint32_t pg_offset, 23733446Smrj uint32_t entries, 23743446Smrj ddi_dma_handle_t dma_hdl, 23753446Smrj uint32_t *tablep) 23763446Smrj { 23773446Smrj int items = 0; 23783446Smrj uint32_t *entryp; 23793446Smrj uint32_t itemv; 23803446Smrj 23813446Smrj entryp = tablep + pg_offset; 23823446Smrj while (items < entries) { 23833446Smrj if (pfn2gartentry(type, pfnarray[items], &itemv)) 23843446Smrj break; 23853446Smrj *(entryp + items) = itemv; 23863446Smrj items++; 23873446Smrj } 23883446Smrj if (items < entries) 23893446Smrj return (-1); 23903446Smrj 23913446Smrj (void) ddi_dma_sync(dma_hdl, pg_offset * sizeof (uint32_t), 23923446Smrj entries * sizeof (uint32_t), DDI_DMA_SYNC_FORDEV); 23933446Smrj 23943446Smrj return (0); 23953446Smrj } 23963446Smrj 23973446Smrj /* 23983446Smrj * agp_bind_key() 23993446Smrj * 24003446Smrj * Description: 24013446Smrj * This function will call low level gart table access functions to 24023446Smrj * set up gart table translation. Also it will do some sanity 24033446Smrj * checking on key table entry. 24043446Smrj * 24053446Smrj * Arguments: 24063446Smrj * softstate driver soft state pointer 24073446Smrj * keyent key table entity pointer to be bound 24083446Smrj * pg_offset aperture start page to be bound 24093446Smrj * Returns: 24103446Smrj * EINVAL not a valid operation 24113446Smrj */ 24123446Smrj static int 24133446Smrj agp_bind_key(agpgart_softstate_t *softstate, 24143446Smrj keytable_ent_t *keyent, uint32_t pg_offset) 24153446Smrj { 24163446Smrj uint64_t pg_end; 24173446Smrj int ret = 0; 24183446Smrj 24193446Smrj ASSERT(keyent); 24203446Smrj ASSERT((keyent->kte_key >= 0) && (keyent->kte_key < AGP_MAXKEYS)); 24213446Smrj ASSERT(mutex_owned(&softstate->asoft_instmutex)); 24223446Smrj 24233446Smrj pg_end = pg_offset + keyent->kte_pages; 24243446Smrj 24253446Smrj if (pg_end > AGP_MB2PAGES(softstate->asoft_info.agpki_apersize)) { 24263446Smrj AGPDB_PRINT2((CE_WARN, 24273446Smrj "agp_bind_key: key=0x%x,exceed aper range", 24283446Smrj keyent->kte_key)); 24293446Smrj 24303446Smrj return (EINVAL); 24313446Smrj } 24323446Smrj 24333446Smrj if (agp_check_off(softstate->asoft_table, 24343446Smrj pg_offset, keyent->kte_pages)) { 24353446Smrj AGPDB_PRINT2((CE_WARN, 24363446Smrj "agp_bind_key: pg_offset=0x%x, pages=0x%lx overlaped", 24373446Smrj pg_offset, keyent->kte_pages)); 24383446Smrj return (EINVAL); 24393446Smrj } 24403446Smrj 24413446Smrj ASSERT(keyent->kte_pfnarray != NULL); 24423446Smrj 24433446Smrj switch (softstate->asoft_devreg.agprd_arctype) { 24443446Smrj case ARC_IGD810: 24453446Smrj case ARC_IGD830: 24463446Smrj ret = lyr_i8xx_add_to_gtt(pg_offset, keyent, 24473446Smrj &softstate->asoft_devreg); 24483446Smrj if (ret) 24493446Smrj return (EIO); 24503446Smrj break; 24513446Smrj case ARC_INTELAGP: 24523446Smrj case ARC_AMD64AGP: 24533446Smrj ret = agp_add_to_gart( 24543446Smrj softstate->asoft_devreg.agprd_arctype, 24553446Smrj keyent->kte_pfnarray, 24563446Smrj pg_offset, 24573446Smrj keyent->kte_pages, 24583446Smrj softstate->gart_dma_handle, 24593446Smrj (uint32_t *)softstate->gart_vbase); 24603446Smrj if (ret) 24613446Smrj return (EINVAL); 24623446Smrj /* Flush GTLB table */ 24633446Smrj lyr_flush_gart_cache(&softstate->asoft_devreg); 24643446Smrj break; 24653446Smrj default: 24663446Smrj AGPDB_PRINT2((CE_WARN, 24673446Smrj "agp_bind_key: arc type = 0x%x unsupported", 24683446Smrj softstate->asoft_devreg.agprd_arctype)); 24693446Smrj return (EINVAL); 24703446Smrj } 24713446Smrj return (0); 24723446Smrj } 24733446Smrj 24743446Smrj static int 24753446Smrj agpgart_attach(dev_info_t *dip, ddi_attach_cmd_t cmd) 24763446Smrj { 24773446Smrj int instance; 24783446Smrj agpgart_softstate_t *softstate; 24793446Smrj 24803446Smrj if (cmd != DDI_ATTACH) { 24813446Smrj AGPDB_PRINT2((CE_WARN, 24823446Smrj "agpgart_attach: only attach op supported")); 24833446Smrj return (DDI_FAILURE); 24843446Smrj } 24853446Smrj instance = ddi_get_instance(dip); 24863446Smrj 24873446Smrj if (ddi_soft_state_zalloc(agpgart_glob_soft_handle, instance) 24884478Skz151634 != DDI_SUCCESS) { 24893446Smrj AGPDB_PRINT2((CE_WARN, 24903446Smrj "agpgart_attach: soft state zalloc failed")); 24913446Smrj goto err1; 24923446Smrj 24933446Smrj } 24943446Smrj softstate = ddi_get_soft_state(agpgart_glob_soft_handle, instance); 24953446Smrj mutex_init(&softstate->asoft_instmutex, NULL, MUTEX_DRIVER, NULL); 24963446Smrj softstate->asoft_dip = dip; 24973446Smrj /* 24983446Smrj * Allocate LDI identifier for agpgart driver 24993446Smrj * Agpgart driver is the kernel consumer 25003446Smrj */ 25013446Smrj if (ldi_ident_from_dip(dip, &softstate->asoft_li)) { 25023446Smrj AGPDB_PRINT2((CE_WARN, 25033446Smrj "agpgart_attach: LDI indentifier allcation failed")); 25043446Smrj goto err2; 25053446Smrj } 25063446Smrj 25073446Smrj softstate->asoft_devreg.agprd_arctype = ARC_UNKNOWN; 25083446Smrj /* Install agp kstat */ 25093446Smrj if (agp_init_kstats(softstate)) { 25103446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_attach: init kstats error")); 25113446Smrj goto err3; 25123446Smrj } 25133446Smrj /* 25143446Smrj * devfs will create /dev/agpgart 25153446Smrj * and /devices/agpgart:agpgart 25163446Smrj */ 25173446Smrj 25183446Smrj if (ddi_create_minor_node(dip, AGPGART_DEVNODE, S_IFCHR, 25193446Smrj AGP_INST2MINOR(instance), 25203446Smrj DDI_NT_AGP_PSEUDO, 0)) { 25213446Smrj AGPDB_PRINT2((CE_WARN, 25223446Smrj "agpgart_attach: Can not create minor node")); 25233446Smrj goto err4; 25243446Smrj } 25253446Smrj 25263446Smrj softstate->asoft_table = kmem_zalloc( 25274478Skz151634 AGP_MAXKEYS * (sizeof (keytable_ent_t)), 25284478Skz151634 KM_SLEEP); 25293446Smrj 25303446Smrj return (DDI_SUCCESS); 25313446Smrj err4: 25323446Smrj agp_fini_kstats(softstate); 25333446Smrj err3: 25343446Smrj ldi_ident_release(softstate->asoft_li); 25353446Smrj err2: 25363446Smrj ddi_soft_state_free(agpgart_glob_soft_handle, instance); 25373446Smrj err1: 25383446Smrj return (DDI_FAILURE); 25393446Smrj } 25403446Smrj 25413446Smrj static int 25423446Smrj agpgart_detach(dev_info_t *dip, ddi_detach_cmd_t cmd) 25433446Smrj { 25443446Smrj int instance; 25453446Smrj agpgart_softstate_t *st; 25463446Smrj 25473446Smrj instance = ddi_get_instance(dip); 25483446Smrj 25493446Smrj st = ddi_get_soft_state(agpgart_glob_soft_handle, instance); 25503446Smrj 25513446Smrj if (cmd != DDI_DETACH) 25523446Smrj return (DDI_FAILURE); 25533446Smrj 25543446Smrj /* 25553446Smrj * Caller should free all the memory allocated explicitly. 25563446Smrj * We release the memory allocated by caller which is not 25573446Smrj * properly freed. mutex_enter here make sure assertion on 25583446Smrj * softstate mutex success in agp_dealloc_mem. 25593446Smrj */ 25603446Smrj mutex_enter(&st->asoft_instmutex); 25613446Smrj if (agp_del_allkeys(st)) { 25623446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_detach: agp_del_allkeys err")); 25633446Smrj AGPDB_PRINT2((CE_WARN, 25643446Smrj "you might free agp memory exported to your applications")); 25653446Smrj 25663446Smrj mutex_exit(&st->asoft_instmutex); 25673446Smrj return (DDI_FAILURE); 25683446Smrj } 25693446Smrj mutex_exit(&st->asoft_instmutex); 25703446Smrj if (st->asoft_table) { 25713446Smrj kmem_free(st->asoft_table, 25723446Smrj AGP_MAXKEYS * (sizeof (keytable_ent_t))); 25733446Smrj st->asoft_table = 0; 25743446Smrj } 25753446Smrj 25763446Smrj ddi_remove_minor_node(dip, AGPGART_DEVNODE); 25773446Smrj agp_fini_kstats(st); 25783446Smrj ldi_ident_release(st->asoft_li); 25793446Smrj mutex_destroy(&st->asoft_instmutex); 25803446Smrj ddi_soft_state_free(agpgart_glob_soft_handle, instance); 25813446Smrj 25823446Smrj return (DDI_SUCCESS); 25833446Smrj } 25843446Smrj 25853446Smrj /*ARGSUSED*/ 25863446Smrj static int 25873446Smrj agpgart_getinfo(dev_info_t *dip, ddi_info_cmd_t cmd, void *arg, 25883446Smrj void **resultp) 25893446Smrj { 25903446Smrj agpgart_softstate_t *st; 25913446Smrj int instance, rval = DDI_FAILURE; 25923446Smrj dev_t dev; 25933446Smrj 25943446Smrj switch (cmd) { 25953446Smrj case DDI_INFO_DEVT2DEVINFO: 25963446Smrj dev = (dev_t)arg; 25973446Smrj instance = AGP_DEV2INST(dev); 25983446Smrj st = ddi_get_soft_state(agpgart_glob_soft_handle, instance); 25993446Smrj if (st != NULL) { 26003446Smrj mutex_enter(&st->asoft_instmutex); 26013446Smrj *resultp = st->asoft_dip; 26023446Smrj mutex_exit(&st->asoft_instmutex); 26033446Smrj rval = DDI_SUCCESS; 26043446Smrj } else 26053446Smrj *resultp = NULL; 26063446Smrj 26073446Smrj break; 26083446Smrj case DDI_INFO_DEVT2INSTANCE: 26093446Smrj dev = (dev_t)arg; 26103446Smrj instance = AGP_DEV2INST(dev); 26113446Smrj *resultp = (void *)(uintptr_t)instance; 26123446Smrj rval = DDI_SUCCESS; 26133446Smrj 26143446Smrj break; 26153446Smrj default: 26163446Smrj break; 26173446Smrj } 26183446Smrj 26193446Smrj return (rval); 26203446Smrj } 26213446Smrj 26223446Smrj /* 26233446Smrj * agpgart_open() 26243446Smrj * 26253446Smrj * Description: 26263446Smrj * This function is the driver open entry point. If it is the 26273446Smrj * first time the agpgart driver is opened, the driver will 26283446Smrj * open other agp related layered drivers and set up the agpgart 26293446Smrj * table properly. 26303446Smrj * 26313446Smrj * Arguments: 26323446Smrj * dev device number pointer 26333446Smrj * openflags open flags 26343446Smrj * otyp OTYP_BLK, OTYP_CHR 26353446Smrj * credp user's credential's struct pointer 26363446Smrj * 26373446Smrj * Returns: 26383446Smrj * ENXIO operation error 26393446Smrj * EAGAIN resoure temporarily unvailable 26403446Smrj * 0 success 26413446Smrj */ 26423446Smrj /*ARGSUSED*/ 26433446Smrj static int 26443446Smrj agpgart_open(dev_t *dev, int openflags, int otyp, cred_t *credp) 26453446Smrj { 26463446Smrj int instance = AGP_DEV2INST(*dev); 26473446Smrj agpgart_softstate_t *softstate; 26483446Smrj int rc = 0; 26493446Smrj 26503446Smrj softstate = ddi_get_soft_state(agpgart_glob_soft_handle, instance); 26513446Smrj if (softstate == NULL) { 26523446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_open: get soft state err")); 26533446Smrj return (ENXIO); 26543446Smrj } 26553446Smrj mutex_enter(&softstate->asoft_instmutex); 26563446Smrj 26573446Smrj if (softstate->asoft_opened) { 26583446Smrj softstate->asoft_opened++; 26593446Smrj mutex_exit(&softstate->asoft_instmutex); 26603446Smrj return (0); 26613446Smrj } 26623446Smrj 26633446Smrj /* 26643446Smrj * The driver is opened first time, so we initialize layered 26653446Smrj * driver interface and softstate member here. 26663446Smrj */ 26673446Smrj softstate->asoft_pgused = 0; 26683446Smrj if (lyr_init(&softstate->asoft_devreg, softstate->asoft_li)) { 26693446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_open: lyr_init failed")); 26703446Smrj mutex_exit(&softstate->asoft_instmutex); 26713446Smrj return (EAGAIN); 26723446Smrj } 26733446Smrj 26743446Smrj /* Call into layered driver */ 26753446Smrj if (lyr_get_info(&softstate->asoft_info, &softstate->asoft_devreg)) { 26763446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_open: lyr_get_info error")); 26773446Smrj lyr_end(&softstate->asoft_devreg); 26783446Smrj mutex_exit(&softstate->asoft_instmutex); 26793446Smrj return (EIO); 26803446Smrj } 26813446Smrj 26823446Smrj /* 26833446Smrj * BIOS already set up gtt table for ARC_IGD830 26843446Smrj */ 26853446Smrj if (IS_INTEL_830(softstate->asoft_devreg.agprd_arctype)) { 26863446Smrj softstate->asoft_opened++; 26873446Smrj 26883446Smrj softstate->asoft_pgtotal = 26893446Smrj get_max_pages(softstate->asoft_info.agpki_apersize); 26903446Smrj 26913446Smrj if (lyr_config_devices(&softstate->asoft_devreg)) { 26923446Smrj AGPDB_PRINT2((CE_WARN, 26933446Smrj "agpgart_open: lyr_config_devices error")); 26943446Smrj lyr_end(&softstate->asoft_devreg); 26953446Smrj mutex_exit(&softstate->asoft_instmutex); 26963446Smrj 26973446Smrj return (EIO); 26983446Smrj } 26993446Smrj mutex_exit(&softstate->asoft_instmutex); 27003446Smrj return (0); 27013446Smrj } 27023446Smrj 27033446Smrj rc = alloc_gart_table(softstate); 27043446Smrj 27053446Smrj /* 27063446Smrj * Allocate physically contiguous pages for AGP arc or 27073446Smrj * i810 arc. If failed, divide aper_size by 2 to 27083446Smrj * reduce gart table size until 4 megabytes. This 27093446Smrj * is just a workaround for systems with very few 27103446Smrj * physically contiguous memory. 27113446Smrj */ 27123446Smrj if (rc) { 27133446Smrj while ((softstate->asoft_info.agpki_apersize >= 4) && 27143446Smrj (alloc_gart_table(softstate))) { 27153446Smrj softstate->asoft_info.agpki_apersize >>= 1; 27163446Smrj } 27173446Smrj if (softstate->asoft_info.agpki_apersize >= 4) 27183446Smrj rc = 0; 27193446Smrj } 27203446Smrj 27213446Smrj if (rc != 0) { 27223446Smrj AGPDB_PRINT2((CE_WARN, 27233446Smrj "agpgart_open: alloc gart table failed")); 27243446Smrj lyr_end(&softstate->asoft_devreg); 27253446Smrj mutex_exit(&softstate->asoft_instmutex); 27263446Smrj return (EAGAIN); 27273446Smrj } 27283446Smrj 27293446Smrj softstate->asoft_pgtotal = 27303446Smrj get_max_pages(softstate->asoft_info.agpki_apersize); 27313446Smrj /* 27323446Smrj * BIOS doesn't initialize GTT for i810, 27333446Smrj * So i810 GTT must be created by driver. 27343446Smrj * 27353446Smrj * Set up gart table and enable it. 27363446Smrj */ 27373446Smrj if (lyr_set_gart_addr(softstate->gart_pbase, 27383446Smrj &softstate->asoft_devreg)) { 27393446Smrj AGPDB_PRINT2((CE_WARN, 27403446Smrj "agpgart_open: set gart table addr failed")); 27413446Smrj free_gart_table(softstate); 27423446Smrj lyr_end(&softstate->asoft_devreg); 27433446Smrj mutex_exit(&softstate->asoft_instmutex); 27443446Smrj return (EIO); 27453446Smrj } 27463446Smrj if (lyr_config_devices(&softstate->asoft_devreg)) { 27473446Smrj AGPDB_PRINT2((CE_WARN, 27483446Smrj "agpgart_open: lyr_config_devices failed")); 27493446Smrj free_gart_table(softstate); 27503446Smrj lyr_end(&softstate->asoft_devreg); 27513446Smrj mutex_exit(&softstate->asoft_instmutex); 27523446Smrj return (EIO); 27533446Smrj } 27543446Smrj 27553446Smrj softstate->asoft_opened++; 27563446Smrj mutex_exit(&softstate->asoft_instmutex); 27573446Smrj 27583446Smrj return (0); 27593446Smrj } 27603446Smrj 27613446Smrj /* 27623446Smrj * agpgart_close() 27633446Smrj * 27643446Smrj * Description: 27653446Smrj * agpgart_close will release resources allocated in the first open 27663446Smrj * and close other open layered drivers. Also it frees the memory 27673446Smrj * allocated by ioctls. 27683446Smrj * 27693446Smrj * Arguments: 27703446Smrj * dev device number 27713446Smrj * flag file status flag 27723446Smrj * otyp OTYP_BLK, OTYP_CHR 27733446Smrj * credp user's credential's struct pointer 27743446Smrj * 27753446Smrj * Returns: 27763446Smrj * ENXIO not an error, to support "deferred attach" 27773446Smrj * 0 success 27783446Smrj */ 27793446Smrj /*ARGSUSED*/ 27803446Smrj static int 27813446Smrj agpgart_close(dev_t dev, int flag, int otyp, cred_t *credp) 27823446Smrj { 27833446Smrj int instance = AGP_DEV2INST(dev); 27843446Smrj agpgart_softstate_t *softstate; 27853446Smrj 27863446Smrj softstate = ddi_get_soft_state(agpgart_glob_soft_handle, instance); 27873446Smrj if (softstate == NULL) { 27883446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_close: get soft state err")); 27893446Smrj return (ENXIO); 27903446Smrj } 27913446Smrj 27923446Smrj mutex_enter(&softstate->asoft_instmutex); 27933446Smrj ASSERT(softstate->asoft_opened); 27943446Smrj 27953446Smrj 27963446Smrj /* 27973446Smrj * If the last process close this device is not the controlling 27983446Smrj * process, also release the control over agpgart driver here if the 27993446Smrj * the controlling process fails to release the control before it 28003446Smrj * close the driver. 28013446Smrj */ 28023446Smrj if (softstate->asoft_acquired == 1) { 28033446Smrj AGPDB_PRINT2((CE_WARN, 28043446Smrj "agpgart_close: auto release control over driver")); 28053446Smrj release_control(softstate); 28063446Smrj } 28073446Smrj 28083446Smrj if (lyr_unconfig_devices(&softstate->asoft_devreg)) { 28093446Smrj AGPDB_PRINT2((CE_WARN, 28103446Smrj "agpgart_close: lyr_unconfig_device error")); 28113446Smrj mutex_exit(&softstate->asoft_instmutex); 28123446Smrj return (EIO); 28133446Smrj } 28143446Smrj softstate->asoft_agpen = 0; 28153446Smrj 28163446Smrj if (!IS_INTEL_830(softstate->asoft_devreg.agprd_arctype)) { 28173446Smrj free_gart_table(softstate); 28183446Smrj } 28193446Smrj 28203446Smrj lyr_end(&softstate->asoft_devreg); 28213446Smrj 28223446Smrj /* 28233446Smrj * This statement must be positioned before agp_del_allkeys 28243446Smrj * agp_dealloc_mem indirectly called by agp_del_allkeys 28253446Smrj * will test this variable. 28263446Smrj */ 28273446Smrj softstate->asoft_opened = 0; 28283446Smrj 28293446Smrj /* 28303446Smrj * Free the memory allocated by user applications which 28313446Smrj * was never deallocated. 28323446Smrj */ 28333446Smrj (void) agp_del_allkeys(softstate); 28343446Smrj 28353446Smrj mutex_exit(&softstate->asoft_instmutex); 28363446Smrj 28373446Smrj return (0); 28383446Smrj } 28393446Smrj 28403446Smrj static int 28413446Smrj ioctl_agpgart_info(agpgart_softstate_t *softstate, void *arg, int flags) 28423446Smrj { 28433446Smrj agp_info_t infostruct; 28443446Smrj #ifdef _MULTI_DATAMODEL 28453446Smrj agp_info32_t infostruct32; 28463446Smrj #endif 28473446Smrj 28483446Smrj bzero(&infostruct, sizeof (agp_info_t)); 28493446Smrj 28503446Smrj #ifdef _MULTI_DATAMODEL 28513446Smrj bzero(&infostruct32, sizeof (agp_info32_t)); 28523446Smrj if (ddi_model_convert_from(flags & FMODELS) == DDI_MODEL_ILP32) { 28533446Smrj if (copyinfo(softstate, &infostruct)) 28543446Smrj return (EINVAL); 28553446Smrj 28563446Smrj agpinfo_default_to_32(infostruct, infostruct32); 28573446Smrj if (ddi_copyout(&infostruct32, arg, 28583446Smrj sizeof (agp_info32_t), flags) != 0) 28593446Smrj return (EFAULT); 28603446Smrj 28613446Smrj return (0); 28623446Smrj } 28633446Smrj #endif /* _MULTI_DATAMODEL */ 28643446Smrj if (copyinfo(softstate, &infostruct)) 28653446Smrj return (EINVAL); 28663446Smrj 28673446Smrj if (ddi_copyout(&infostruct, arg, sizeof (agp_info_t), flags) != 0) { 28683446Smrj return (EFAULT); 28693446Smrj } 28703446Smrj 28713446Smrj return (0); 28723446Smrj } 28733446Smrj 28743446Smrj static int 28753446Smrj ioctl_agpgart_acquire(agpgart_softstate_t *st) 28763446Smrj { 28773446Smrj if (st->asoft_acquired) { 28783446Smrj AGPDB_PRINT2((CE_WARN, "ioctl_acquire: already acquired")); 28793446Smrj return (EBUSY); 28803446Smrj } 28813446Smrj acquire_control(st); 28823446Smrj return (0); 28833446Smrj } 28843446Smrj 28853446Smrj static int 28863446Smrj ioctl_agpgart_release(agpgart_softstate_t *st) 28873446Smrj { 28883446Smrj if (is_controlling_proc(st) < 0) { 28893446Smrj AGPDB_PRINT2((CE_WARN, 28903446Smrj "ioctl_agpgart_release: not a controlling process")); 28913446Smrj return (EPERM); 28923446Smrj } 28933446Smrj release_control(st); 28943446Smrj return (0); 28953446Smrj } 28963446Smrj 28973446Smrj static int 28983446Smrj ioctl_agpgart_setup(agpgart_softstate_t *st, void *arg, int flags) 28993446Smrj { 29003446Smrj agp_setup_t data; 29013446Smrj int rc = 0; 29023446Smrj 29033446Smrj if (is_controlling_proc(st) < 0) { 29043446Smrj AGPDB_PRINT2((CE_WARN, 29053446Smrj "ioctl_agpgart_setup: not a controlling process")); 29063446Smrj return (EPERM); 29073446Smrj } 29083446Smrj 29093446Smrj if (!IS_TRUE_AGP(st->asoft_devreg.agprd_arctype)) { 29103446Smrj AGPDB_PRINT2((CE_WARN, 29113446Smrj "ioctl_agpgart_setup: no true agp bridge")); 29123446Smrj return (EINVAL); 29133446Smrj } 29143446Smrj 29153446Smrj if (ddi_copyin(arg, &data, sizeof (agp_setup_t), flags) != 0) 29163446Smrj return (EFAULT); 29173446Smrj 29183446Smrj if (rc = agp_setup(st, data.agps_mode)) 29193446Smrj return (rc); 29203446Smrj /* Store agp mode status for kstat */ 29213446Smrj st->asoft_agpen = 1; 29223446Smrj return (0); 29233446Smrj } 29243446Smrj 29253446Smrj static int 29263446Smrj ioctl_agpgart_alloc(agpgart_softstate_t *st, void *arg, int flags) 29273446Smrj { 29283446Smrj agp_allocate_t alloc_info; 29293446Smrj keytable_ent_t *entryp; 29303446Smrj size_t length; 29313446Smrj uint64_t pg_num; 29323446Smrj 29333446Smrj if (is_controlling_proc(st) < 0) { 29343446Smrj AGPDB_PRINT2((CE_WARN, 29353446Smrj "ioctl_agpgart_alloc: not a controlling process")); 29363446Smrj return (EPERM); 29373446Smrj } 29383446Smrj 29393446Smrj if (ddi_copyin(arg, &alloc_info, 29403446Smrj sizeof (agp_allocate_t), flags) != 0) { 29413446Smrj return (EFAULT); 29423446Smrj } 29433446Smrj pg_num = st->asoft_pgused + alloc_info.agpa_pgcount; 29443446Smrj if (pg_num > st->asoft_pgtotal) { 29453446Smrj AGPDB_PRINT2((CE_WARN, 29463446Smrj "ioctl_agpgart_alloc: exceeding the memory pages limit")); 29473446Smrj AGPDB_PRINT2((CE_WARN, 29483446Smrj "ioctl_agpgart_alloc: request %x pages failed", 29493446Smrj alloc_info.agpa_pgcount)); 29503446Smrj AGPDB_PRINT2((CE_WARN, 29513446Smrj "ioctl_agpgart_alloc: pages used %x total is %x", 29523446Smrj st->asoft_pgused, st->asoft_pgtotal)); 29533446Smrj 29543446Smrj return (EINVAL); 29553446Smrj } 29563446Smrj 29573446Smrj length = AGP_PAGES2BYTES(alloc_info.agpa_pgcount); 29583446Smrj entryp = agp_alloc_mem(st, length, alloc_info.agpa_type); 29593446Smrj if (!entryp) { 29603446Smrj AGPDB_PRINT2((CE_WARN, 29613446Smrj "ioctl_agpgart_alloc: allocate 0x%lx bytes failed", 29623446Smrj length)); 29633446Smrj return (ENOMEM); 29643446Smrj } 29653446Smrj ASSERT((entryp->kte_key >= 0) && (entryp->kte_key < AGP_MAXKEYS)); 29663446Smrj alloc_info.agpa_key = entryp->kte_key; 29673446Smrj if (alloc_info.agpa_type == AGP_PHYSICAL) { 29683446Smrj alloc_info.agpa_physical = 29693446Smrj (uint32_t)(entryp->kte_pfnarray[0] << AGP_PAGE_SHIFT); 29703446Smrj } 29713446Smrj /* Update the memory pagse used */ 29723446Smrj st->asoft_pgused += alloc_info.agpa_pgcount; 29733446Smrj 29743446Smrj if (ddi_copyout(&alloc_info, arg, 29753446Smrj sizeof (agp_allocate_t), flags) != 0) { 29763446Smrj 29773446Smrj return (EFAULT); 29783446Smrj } 29793446Smrj 29803446Smrj return (0); 29813446Smrj } 29823446Smrj 29833446Smrj static int 29843446Smrj ioctl_agpgart_dealloc(agpgart_softstate_t *st, intptr_t arg) 29853446Smrj { 29863446Smrj int key; 29873446Smrj keytable_ent_t *keyent; 29883446Smrj 29893446Smrj if (is_controlling_proc(st) < 0) { 29903446Smrj AGPDB_PRINT2((CE_WARN, 29913446Smrj "ioctl_agpgart_dealloc: not a controlling process")); 29923446Smrj return (EPERM); 29933446Smrj } 29943446Smrj key = (int)arg; 29953446Smrj if ((key >= AGP_MAXKEYS) || key < 0) { 29963446Smrj return (EINVAL); 29973446Smrj } 29983446Smrj keyent = &st->asoft_table[key]; 29993446Smrj if (!keyent->kte_memhdl) { 30003446Smrj return (EINVAL); 30013446Smrj } 30023446Smrj 30033446Smrj if (agp_dealloc_mem(st, keyent)) 30043446Smrj return (EINVAL); 30053446Smrj 30063446Smrj /* Update the memory pages used */ 30073446Smrj st->asoft_pgused -= keyent->kte_pages; 30083446Smrj bzero(keyent, sizeof (keytable_ent_t)); 30093446Smrj 30103446Smrj return (0); 30113446Smrj } 30123446Smrj 30133446Smrj static int 30143446Smrj ioctl_agpgart_bind(agpgart_softstate_t *st, void *arg, int flags) 30153446Smrj { 30163446Smrj agp_bind_t bind_info; 30173446Smrj keytable_ent_t *keyent; 30183446Smrj int key; 30193446Smrj uint32_t pg_offset; 30203446Smrj int retval = 0; 30213446Smrj 30223446Smrj if (is_controlling_proc(st) < 0) { 30233446Smrj AGPDB_PRINT2((CE_WARN, 30243446Smrj "ioctl_agpgart_bind: not a controlling process")); 30253446Smrj return (EPERM); 30263446Smrj } 30273446Smrj 30283446Smrj if (ddi_copyin(arg, &bind_info, sizeof (agp_bind_t), flags) != 0) { 30293446Smrj return (EFAULT); 30303446Smrj } 30313446Smrj 30323446Smrj key = bind_info.agpb_key; 30333446Smrj if ((key >= AGP_MAXKEYS) || key < 0) { 30343446Smrj AGPDB_PRINT2((CE_WARN, "ioctl_agpgart_bind: invalid key")); 30353446Smrj return (EINVAL); 30363446Smrj } 30373446Smrj 30383446Smrj if (IS_INTEL_830(st->asoft_devreg.agprd_arctype)) { 30393446Smrj if (AGP_PAGES2KB(bind_info.agpb_pgstart) < 30403446Smrj st->asoft_info.agpki_presize) { 30413446Smrj AGPDB_PRINT2((CE_WARN, 30424478Skz151634 "ioctl_agpgart_bind: bind to prealloc area " 30434478Skz151634 "pgstart = %dKB < presize = %ldKB", 30444478Skz151634 AGP_PAGES2KB(bind_info.agpb_pgstart), 30454478Skz151634 st->asoft_info.agpki_presize)); 30463446Smrj return (EINVAL); 30473446Smrj } 30483446Smrj } 30493446Smrj 30503446Smrj pg_offset = bind_info.agpb_pgstart; 30513446Smrj keyent = &st->asoft_table[key]; 30523446Smrj if (!keyent->kte_memhdl) { 30533446Smrj AGPDB_PRINT2((CE_WARN, 30543446Smrj "ioctl_agpgart_bind: Key = 0x%x can't get keyenty", 30553446Smrj key)); 30563446Smrj return (EINVAL); 30573446Smrj } 30583446Smrj 30593446Smrj if (keyent->kte_bound != 0) { 30603446Smrj AGPDB_PRINT2((CE_WARN, 30613446Smrj "ioctl_agpgart_bind: Key = 0x%x already bound", 30623446Smrj key)); 30633446Smrj return (EINVAL); 30643446Smrj } 30653446Smrj retval = agp_bind_key(st, keyent, pg_offset); 30663446Smrj 30673446Smrj if (retval == 0) { 30683446Smrj keyent->kte_pgoff = pg_offset; 30693446Smrj keyent->kte_bound = 1; 30703446Smrj } 30713446Smrj 30723446Smrj return (retval); 30733446Smrj } 30743446Smrj 30753446Smrj static int 30763446Smrj ioctl_agpgart_unbind(agpgart_softstate_t *st, void *arg, int flags) 30773446Smrj { 30783446Smrj int key, retval = 0; 30793446Smrj agp_unbind_t unbindinfo; 30803446Smrj keytable_ent_t *keyent; 30813446Smrj 30823446Smrj if (is_controlling_proc(st) < 0) { 30833446Smrj AGPDB_PRINT2((CE_WARN, 30843446Smrj "ioctl_agpgart_bind: not a controlling process")); 30853446Smrj return (EPERM); 30863446Smrj } 30873446Smrj 30883446Smrj if (ddi_copyin(arg, &unbindinfo, sizeof (unbindinfo), flags) != 0) { 30893446Smrj return (EFAULT); 30903446Smrj } 30913446Smrj key = unbindinfo.agpu_key; 30923446Smrj if ((key >= AGP_MAXKEYS) || key < 0) { 30933446Smrj AGPDB_PRINT2((CE_WARN, "ioctl_agpgart_unbind: invalid key")); 30943446Smrj return (EINVAL); 30953446Smrj } 30963446Smrj keyent = &st->asoft_table[key]; 30973446Smrj if (!keyent->kte_bound) { 30983446Smrj return (EINVAL); 30993446Smrj } 31003446Smrj 31013446Smrj if ((retval = agp_unbind_key(st, keyent)) != 0) 31023446Smrj return (retval); 31033446Smrj 31043446Smrj return (0); 31053446Smrj } 31063446Smrj 31073446Smrj /*ARGSUSED*/ 31083446Smrj static int 31093446Smrj agpgart_ioctl(dev_t dev, int cmd, intptr_t intarg, int flags, 31103446Smrj cred_t *credp, int *rvalp) 31113446Smrj { 31123446Smrj int instance; 31133446Smrj int retval = 0; 31143446Smrj void *arg = (void*)intarg; 31153446Smrj 31163446Smrj agpgart_softstate_t *softstate; 31173446Smrj 31183446Smrj instance = AGP_DEV2INST(dev); 31193446Smrj softstate = ddi_get_soft_state(agpgart_glob_soft_handle, instance); 31203446Smrj if (softstate == NULL) { 31213446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_ioctl: get soft state err")); 31223446Smrj return (ENXIO); 31233446Smrj } 31243446Smrj 31253446Smrj if ((cmd != AGPIOC_INFO) && secpolicy_gart_access(credp)) { 31263446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_ioctl: permission denied")); 31273446Smrj return (EPERM); 31283446Smrj } 31293446Smrj 31303446Smrj mutex_enter(&softstate->asoft_instmutex); 31313446Smrj 31323446Smrj switch (cmd) { 31333446Smrj case AGPIOC_INFO: 31343446Smrj retval = ioctl_agpgart_info(softstate, arg, flags); 31353446Smrj break; 31363446Smrj case AGPIOC_ACQUIRE: 31373446Smrj retval = ioctl_agpgart_acquire(softstate); 31383446Smrj break; 31393446Smrj case AGPIOC_RELEASE: 31403446Smrj retval = ioctl_agpgart_release(softstate); 31413446Smrj break; 31423446Smrj case AGPIOC_SETUP: 31433446Smrj retval = ioctl_agpgart_setup(softstate, arg, flags); 31443446Smrj break; 31453446Smrj case AGPIOC_ALLOCATE: 31463446Smrj retval = ioctl_agpgart_alloc(softstate, arg, flags); 31473446Smrj break; 31483446Smrj case AGPIOC_DEALLOCATE: 31493446Smrj retval = ioctl_agpgart_dealloc(softstate, intarg); 31503446Smrj break; 31513446Smrj case AGPIOC_BIND: 31523446Smrj retval = ioctl_agpgart_bind(softstate, arg, flags); 31533446Smrj break; 31543446Smrj case AGPIOC_UNBIND: 31553446Smrj retval = ioctl_agpgart_unbind(softstate, arg, flags); 31563446Smrj break; 31573446Smrj default: 31583446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_ioctl: wrong argument")); 31593446Smrj retval = ENXIO; 31603446Smrj break; 31613446Smrj } 31623446Smrj 31633446Smrj mutex_exit(&softstate->asoft_instmutex); 31643446Smrj return (retval); 31653446Smrj } 31663446Smrj 31673446Smrj static int 31683446Smrj agpgart_segmap(dev_t dev, off_t off, struct as *asp, 31693446Smrj caddr_t *addrp, off_t len, unsigned int prot, 31703446Smrj unsigned int maxprot, unsigned int flags, cred_t *credp) 31713446Smrj { 31723446Smrj 31733446Smrj struct agpgart_softstate *softstate; 31743446Smrj int instance; 31753446Smrj int rc = 0; 31763446Smrj 31773446Smrj instance = AGP_DEV2INST(dev); 31783446Smrj softstate = ddi_get_soft_state(agpgart_glob_soft_handle, instance); 31793446Smrj if (softstate == NULL) { 31803446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_segmap: get soft state err")); 31813446Smrj return (ENXIO); 31823446Smrj } 31833446Smrj if (!AGP_ALIGNED(len)) 31843446Smrj return (EINVAL); 31853446Smrj 31863446Smrj mutex_enter(&softstate->asoft_instmutex); 31873446Smrj 31883446Smrj /* 31893446Smrj * Process must have gart map privilege or gart access privilege 31903446Smrj * to map agp memory. 31913446Smrj */ 31923446Smrj if (secpolicy_gart_map(credp)) { 31933446Smrj mutex_exit(&softstate->asoft_instmutex); 31943446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_segmap: permission denied")); 31953446Smrj return (EPERM); 31963446Smrj } 31973446Smrj 31983446Smrj rc = devmap_setup(dev, (offset_t)off, asp, addrp, 31993446Smrj (size_t)len, prot, maxprot, flags, credp); 32003446Smrj 32013446Smrj mutex_exit(&softstate->asoft_instmutex); 32023446Smrj return (rc); 32033446Smrj } 32043446Smrj 32053446Smrj /*ARGSUSED*/ 32063446Smrj static int 32073446Smrj agpgart_devmap(dev_t dev, devmap_cookie_t cookie, offset_t offset, size_t len, 32083446Smrj size_t *mappedlen, uint_t model) 32093446Smrj { 32103446Smrj struct agpgart_softstate *softstate; 32113446Smrj int instance, status; 32123446Smrj struct keytable_ent *mementry; 32133446Smrj offset_t local_offset; 32143446Smrj 32153446Smrj instance = AGP_DEV2INST(dev); 32163446Smrj softstate = ddi_get_soft_state(agpgart_glob_soft_handle, instance); 32173446Smrj if (softstate == NULL) { 32183446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_devmap: get soft state err")); 32193446Smrj return (ENXIO); 32203446Smrj } 32213446Smrj 32223446Smrj 32233446Smrj if (offset > MB2BYTES(softstate->asoft_info.agpki_apersize)) { 32243446Smrj AGPDB_PRINT2((CE_WARN, "agpgart_devmap: offset is too large")); 32253446Smrj return (EINVAL); 32263446Smrj } 32273446Smrj 32283446Smrj /* 32293446Smrj * Can not find any memory now, so fail. 32303446Smrj */ 32313446Smrj 32323446Smrj mementry = agp_find_bound_keyent(softstate, AGP_BYTES2PAGES(offset)); 32333446Smrj 32343446Smrj if (mementry == NULL) { 32353446Smrj AGPDB_PRINT2((CE_WARN, 32363446Smrj "agpgart_devmap: can not find the proper keyent")); 32373446Smrj return (EINVAL); 32383446Smrj } 32393446Smrj 32403446Smrj local_offset = offset - AGP_PAGES2BYTES(mementry->kte_pgoff); 32413446Smrj 32423446Smrj if (len > (AGP_PAGES2BYTES(mementry->kte_pages) - local_offset)) { 32433446Smrj len = AGP_PAGES2BYTES(mementry->kte_pages) - local_offset; 32443446Smrj } 32453446Smrj 32463446Smrj switch (mementry->kte_type) { 32473446Smrj case AGP_NORMAL: 32483446Smrj status = devmap_pmem_setup(cookie, softstate->asoft_dip, 32493446Smrj &agp_devmap_cb, 32503446Smrj PMEMP(mementry->kte_memhdl)->pmem_cookie, local_offset, 32513446Smrj len, PROT_ALL, (DEVMAP_DEFAULTS|IOMEM_DATA_UC_WR_COMBINE), 32523446Smrj &mem_dev_acc_attr); 32533446Smrj break; 32543446Smrj default: 32553446Smrj AGPDB_PRINT2((CE_WARN, 32563446Smrj "agpgart_devmap: not a valid memory type")); 32573446Smrj return (EINVAL); 32583446Smrj } 32593446Smrj 32603446Smrj 32613446Smrj if (status == 0) { 32623446Smrj *mappedlen = len; 32633446Smrj } else { 32643446Smrj *mappedlen = 0; 32653446Smrj AGPDB_PRINT2((CE_WARN, 32663446Smrj "agpgart_devmap: devmap interface failed")); 32673446Smrj return (EINVAL); 32683446Smrj } 32693446Smrj 32703446Smrj return (0); 32713446Smrj } 32723446Smrj 32733446Smrj static struct cb_ops agpgart_cb_ops = { 32743446Smrj agpgart_open, /* open() */ 32753446Smrj agpgart_close, /* close() */ 32763446Smrj nodev, /* strategy() */ 32773446Smrj nodev, /* print routine */ 32783446Smrj nodev, /* no dump routine */ 32793446Smrj nodev, /* read() */ 32803446Smrj nodev, /* write() */ 32813446Smrj agpgart_ioctl, /* agpgart_ioctl */ 32823446Smrj agpgart_devmap, /* devmap routine */ 32833446Smrj nodev, /* no longer use mmap routine */ 32843446Smrj agpgart_segmap, /* system segmap routine */ 32853446Smrj nochpoll, /* no chpoll routine */ 32863446Smrj ddi_prop_op, /* system prop operations */ 32873446Smrj 0, /* not a STREAMS driver */ 32883446Smrj D_DEVMAP | D_MP, /* safe for multi-thread/multi-processor */ 32893446Smrj CB_REV, /* cb_ops version? */ 32903446Smrj nodev, /* cb_aread() */ 32913446Smrj nodev, /* cb_awrite() */ 32923446Smrj }; 32933446Smrj 32943446Smrj static struct dev_ops agpgart_ops = { 32953446Smrj DEVO_REV, /* devo_rev */ 32963446Smrj 0, /* devo_refcnt */ 32973446Smrj agpgart_getinfo, /* devo_getinfo */ 32983446Smrj nulldev, /* devo_identify */ 32993446Smrj nulldev, /* devo_probe */ 33003446Smrj agpgart_attach, /* devo_attach */ 33013446Smrj agpgart_detach, /* devo_detach */ 33023446Smrj nodev, /* devo_reset */ 33033446Smrj &agpgart_cb_ops, /* devo_cb_ops */ 33043446Smrj (struct bus_ops *)0, /* devo_bus_ops */ 33053446Smrj NULL, /* devo_power */ 33063446Smrj }; 33073446Smrj 33083446Smrj static struct modldrv modldrv = { 33093446Smrj &mod_driverops, 3310*5376Scg149915 "AGP driver v1.9", 33113446Smrj &agpgart_ops, 33123446Smrj }; 33133446Smrj 33143446Smrj static struct modlinkage modlinkage = { 33153446Smrj MODREV_1, /* MODREV_1 is indicated by manual */ 33163446Smrj {&modldrv, NULL, NULL, NULL} 33173446Smrj }; 33183446Smrj 33193446Smrj static void *agpgart_glob_soft_handle; 33203446Smrj 33213446Smrj int 33223446Smrj _init(void) 33233446Smrj { 33243446Smrj int ret = DDI_SUCCESS; 33253446Smrj 33263446Smrj ret = ddi_soft_state_init(&agpgart_glob_soft_handle, 33274478Skz151634 sizeof (agpgart_softstate_t), 33284478Skz151634 AGPGART_MAX_INSTANCES); 33293446Smrj 33303446Smrj if (ret != 0) { 33313446Smrj AGPDB_PRINT2((CE_WARN, 33323446Smrj "_init: soft state init error code=0x%x", ret)); 33333446Smrj return (ret); 33343446Smrj } 33353446Smrj 33363446Smrj if ((ret = mod_install(&modlinkage)) != 0) { 33373446Smrj AGPDB_PRINT2((CE_WARN, 33383446Smrj "_init: mod install error code=0x%x", ret)); 33393446Smrj ddi_soft_state_fini(&agpgart_glob_soft_handle); 33403446Smrj return (ret); 33413446Smrj } 33423446Smrj 33433446Smrj return (DDI_SUCCESS); 33443446Smrj } 33453446Smrj 33463446Smrj int 33473446Smrj _info(struct modinfo *modinfop) 33483446Smrj { 33493446Smrj return (mod_info(&modlinkage, modinfop)); 33503446Smrj } 33513446Smrj 33523446Smrj int 33533446Smrj _fini(void) 33543446Smrj { 33553446Smrj int ret; 33563446Smrj 33573446Smrj if ((ret = mod_remove(&modlinkage)) == 0) { 33583446Smrj ddi_soft_state_fini(&agpgart_glob_soft_handle); 33593446Smrj } 33603446Smrj 33613446Smrj return (ret); 33623446Smrj } 3363