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Smith" To: xen-devel@lists.xenproject.org Cc: "Daniel P. Smith" , jason.andryuk@amd.com, christopher.w.clark@gmail.com, stefano.stabellini@amd.com, Jan Beulich , Andrew Cooper , =?UTF-8?q?Roger=20Pau=20Monn=C3=A9?= Subject: [PATCH v7 04/38] x86/boot: convert mod refs to boot_module mod Date: Sun, 20 Oct 2024 20:45:39 -0400 Message-Id: <20241021004613.18793-5-dpsmith@apertussolutions.com> X-Mailer: git-send-email 2.30.2 In-Reply-To: <20241021004613.18793-1-dpsmith@apertussolutions.com> References: <20241021004613.18793-1-dpsmith@apertussolutions.com> MIME-Version: 1.0 Content-Transfer-Encoding: quoted-printable X-ZohoMailClient: External X-ZohoMail-DKIM: pass (identity dpsmith@apertussolutions.com) X-ZM-MESSAGEID: 1729471645401116600 Content-Type: text/plain; charset="utf-8" To allow a slow conversion of x86 over to struct boot_module, start with replacing all references to module_t mod, only in setup.c, to the mod eleme= nt of struct boot_module. These serves twofold, first to allow the incremental transition from module_t fields to struct boot_module fields. The second is= to allow the conversion of function definitions from taking module_t parameter= s to accepting struct boot_module as needed when a transitioned field will be accessed. Signed-off-by: Daniel P. Smith --- Changes since v6: - code style - switched to a local ref Changes since v5: - rewrote commit message - coding style changes - added comment for initial_images assignment --- xen/arch/x86/setup.c | 62 +++++++++++++++++++++++++------------------- 1 file changed, 35 insertions(+), 27 deletions(-) diff --git a/xen/arch/x86/setup.c b/xen/arch/x86/setup.c index 48809aa94451..b6d688f8fe5e 100644 --- a/xen/arch/x86/setup.c +++ b/xen/arch/x86/setup.c @@ -1364,15 +1364,19 @@ void asmlinkage __init noreturn __start_xen(unsigne= d long mbi_p) set_kexec_crash_area_size((u64)nr_pages << PAGE_SHIFT); kexec_reserve_area(); =20 - initial_images =3D mod; + /* + * The field bi->mods[0].mod points to the first element of the module= _t + * array. + */ + initial_images =3D bi->mods[0].mod; =20 for ( i =3D 0; !efi_enabled(EFI_LOADER) && i < bi->nr_modules; i++ ) { - if ( mod[i].mod_start & (PAGE_SIZE - 1) ) + if ( bi->mods[i].mod->mod_start & (PAGE_SIZE - 1) ) panic("Bootloader didn't honor module alignment request\n"); - mod[i].mod_end -=3D mod[i].mod_start; - mod[i].mod_start >>=3D PAGE_SHIFT; - mod[i].reserved =3D 0; + bi->mods[i].mod->mod_end -=3D bi->mods[i].mod->mod_start; + bi->mods[i].mod->mod_start >>=3D PAGE_SHIFT; + bi->mods[i].mod->reserved =3D 0; } =20 /* @@ -1383,6 +1387,7 @@ void asmlinkage __init noreturn __start_xen(unsigned = long mbi_p) =20 if ( xen_phys_start ) { + unsigned int xen =3D bi->nr_modules; relocated =3D true; =20 /* @@ -1390,8 +1395,8 @@ void asmlinkage __init noreturn __start_xen(unsigned = long mbi_p) * respective reserve_e820_ram() invocation below. No need to * query efi_boot_mem_unused() here, though. */ - mod[bi->nr_modules].mod_start =3D virt_to_mfn(_stext); - mod[bi->nr_modules].mod_end =3D __2M_rwdata_end - _stext; + bi->mods[xen].mod->mod_start =3D virt_to_mfn(_stext); + bi->mods[xen].mod->mod_end =3D __2M_rwdata_end - _stext; } =20 bi->mods[0].headroom =3D @@ -1483,9 +1488,9 @@ void asmlinkage __init noreturn __start_xen(unsigned = long mbi_p) * move mod[0], we incorporate this as extra space at the star= t. */ struct boot_module *bm =3D &bi->mods[j]; - unsigned long size =3D PAGE_ALIGN(bm->headroom + mod[j].mod_en= d); + unsigned long size =3D PAGE_ALIGN(bm->headroom + bm->mod->mod_= end); =20 - if ( mod[j].reserved ) + if ( bm->mod->reserved ) continue; =20 /* Don't overlap with other modules (or Xen itself). */ @@ -1497,14 +1502,14 @@ void asmlinkage __init noreturn __start_xen(unsigne= d long mbi_p) =20 if ( s < end && (bm->headroom || - ((end - size) >> PAGE_SHIFT) > mod[j].mod_start) ) + ((end - size) >> PAGE_SHIFT) > bm->mod->mod_start) ) { move_memory(end - size + bm->headroom, - (uint64_t)mod[j].mod_start << PAGE_SHIFT, - mod[j].mod_end); - mod[j].mod_start =3D (end - size) >> PAGE_SHIFT; - mod[j].mod_end +=3D bm->headroom; - mod[j].reserved =3D 1; + (uint64_t)bm->mod->mod_start << PAGE_SHIFT, + bm->mod->mod_end); + bm->mod->mod_start =3D (end - size) >> PAGE_SHIFT; + bm->mod->mod_end +=3D bm->headroom; + bm->mod->reserved =3D 1; } } =20 @@ -1530,13 +1535,14 @@ void asmlinkage __init noreturn __start_xen(unsigne= d long mbi_p) #endif } =20 - if ( bi->mods[0].headroom && !mod->reserved ) + if ( bi->mods[0].headroom && !bi->mods[0].mod->reserved ) panic("Not enough memory to relocate the dom0 kernel image\n"); for ( i =3D 0; i < bi->nr_modules; ++i ) { - uint64_t s =3D (uint64_t)mod[i].mod_start << PAGE_SHIFT; + uint64_t s =3D (uint64_t)bi->mods[i].mod->mod_start << PAGE_SHIFT; =20 - reserve_e820_ram(&boot_e820, s, s + PAGE_ALIGN(mod[i].mod_end)); + reserve_e820_ram(&boot_e820, s, + s + PAGE_ALIGN(bi->mods[i].mod->mod_end)); } =20 if ( !xen_phys_start ) @@ -1614,8 +1620,8 @@ void asmlinkage __init noreturn __start_xen(unsigned = long mbi_p) map_e =3D boot_e820.map[j].addr + boot_e820.map[j].size; for ( j =3D 0; j < bi->nr_modules; ++j ) { - uint64_t end =3D pfn_to_paddr(mod[j].mod_start) + - mod[j].mod_end; + uint64_t end =3D pfn_to_paddr(bi->mods[j].mod->mod_sta= rt) + + bi->mods[j].mod->mod_end; =20 if ( map_e < end ) map_e =3D end; @@ -1689,11 +1695,12 @@ void asmlinkage __init noreturn __start_xen(unsigne= d long mbi_p) =20 for ( i =3D 0; i < bi->nr_modules; ++i ) { - set_pdx_range(mod[i].mod_start, - mod[i].mod_start + PFN_UP(mod[i].mod_end)); - map_pages_to_xen((unsigned long)mfn_to_virt(mod[i].mod_start), - _mfn(mod[i].mod_start), - PFN_UP(mod[i].mod_end), PAGE_HYPERVISOR); + set_pdx_range(bi->mods[i].mod->mod_start, + bi->mods[i].mod->mod_start + + PFN_UP(bi->mods[i].mod->mod_end)); + map_pages_to_xen((unsigned long)mfn_to_virt(bi->mods[i].mod->mod_s= tart), + _mfn(bi->mods[i].mod->mod_start), + PFN_UP(bi->mods[i].mod->mod_end), PAGE_HYPERVISOR= ); } =20 #ifdef CONFIG_KEXEC @@ -2082,8 +2089,9 @@ void asmlinkage __init noreturn __start_xen(unsigned = long mbi_p) * We're going to setup domain0 using the module(s) that we stashed sa= fely * above our heap. The second module, if present, is an initrd ramdisk. */ - dom0 =3D create_dom0(mod, bi->mods[0].headroom, - initrdidx < bi->nr_modules ? mod + initrdidx : NULL, + dom0 =3D create_dom0(bi->mods[0].mod, bi->mods[0].headroom, + initrdidx < bi->nr_modules ? bi->mods[initrdidx].mod + : NULL, kextra, bi->loader); if ( !dom0 ) panic("Could not set up DOM0 guest OS\n"); --=20 2.30.2