| ... | @@ -106,7 +106,12 @@ shdr_table_offset: ?u64 = null, | ... | @@ -106,7 +106,12 @@ shdr_table_offset: ?u64 = null, |
| 106 | /// Stored in native-endian format, depending on target endianness needs to be bswapped on read/write. | 106 | /// Stored in native-endian format, depending on target endianness needs to be bswapped on read/write. |
| 107 | /// Same order as in the file. | 107 | /// Same order as in the file. |
| 108 | program_headers: std.ArrayListUnmanaged(elf.Elf64_Phdr) = .{}, | 108 | program_headers: std.ArrayListUnmanaged(elf.Elf64_Phdr) = .{}, |
| 109 | phdr_table_offset: ?u64 = null, | 109 | /// The index into the program headers of the PT_PHDR program header |
| | 110 | phdr_table_index: ?u16 = null, |
| | 111 | /// The index into the program headers of the PT_LOAD program header containing the phdr |
| | 112 | /// Most linkers would merge this with phdr_load_ro_index, |
| | 113 | /// but hot swap means we can't ensure they are consecutive. |
| | 114 | phdr_table_load_index: ?u16 = null, |
| 110 | /// The index into the program headers of a PT_LOAD program header with Read and Execute flags | 115 | /// The index into the program headers of a PT_LOAD program header with Read and Execute flags |
| 111 | phdr_load_re_index: ?u16 = null, | 116 | phdr_load_re_index: ?u16 = null, |
| 112 | /// The index into the program headers of the global offset table. | 117 | /// The index into the program headers of the global offset table. |
| ... | @@ -386,9 +391,10 @@ fn detectAllocCollision(self: *Elf, start: u64, size: u64) ?u64 { | ... | @@ -386,9 +391,10 @@ fn detectAllocCollision(self: *Elf, start: u64, size: u64) ?u64 { |
| 386 | | 391 | |
| 387 | const end = start + padToIdeal(size); | 392 | const end = start + padToIdeal(size); |
| 388 | | 393 | |
| 389 | if (self.shdr_table_offset) |off| { | 394 | if (self.phdr_table_index) |index| { |
| 390 | const shdr_size: u64 = if (small_ptr) @sizeOf(elf.Elf32_Shdr) else @sizeOf(elf.Elf64_Shdr); | 395 | const off = self.program_headers.items[index].p_offset; |
| 391 | const tight_size = self.sections.slice().len * shdr_size; | 396 | const phdr_size: u64 = if (small_ptr) @sizeOf(elf.Elf32_Phdr) else @sizeOf(elf.Elf64_Phdr); |
| | 397 | const tight_size = self.program_headers.items.len * phdr_size; |
| 392 | const increased_size = padToIdeal(tight_size); | 398 | const increased_size = padToIdeal(tight_size); |
| 393 | const test_end = off + increased_size; | 399 | const test_end = off + increased_size; |
| 394 | if (end > off and start < test_end) { | 400 | if (end > off and start < test_end) { |
| ... | @@ -396,9 +402,9 @@ fn detectAllocCollision(self: *Elf, start: u64, size: u64) ?u64 { | ... | @@ -396,9 +402,9 @@ fn detectAllocCollision(self: *Elf, start: u64, size: u64) ?u64 { |
| 396 | } | 402 | } |
| 397 | } | 403 | } |
| 398 | | 404 | |
| 399 | if (self.phdr_table_offset) |off| { | 405 | if (self.shdr_table_offset) |off| { |
| 400 | const phdr_size: u64 = if (small_ptr) @sizeOf(elf.Elf32_Phdr) else @sizeOf(elf.Elf64_Phdr); | 406 | const shdr_size: u64 = if (small_ptr) @sizeOf(elf.Elf32_Shdr) else @sizeOf(elf.Elf64_Shdr); |
| 401 | const tight_size = self.sections.slice().len * phdr_size; | 407 | const tight_size = self.sections.slice().len * shdr_size; |
| 402 | const increased_size = padToIdeal(tight_size); | 408 | const increased_size = padToIdeal(tight_size); |
| 403 | const test_end = off + increased_size; | 409 | const test_end = off + increased_size; |
| 404 | if (end > off and start < test_end) { | 410 | if (end > off and start < test_end) { |
| ... | @@ -427,10 +433,11 @@ pub fn allocatedSize(self: *Elf, start: u64) u64 { | ... | @@ -427,10 +433,11 @@ pub fn allocatedSize(self: *Elf, start: u64) u64 { |
| 427 | if (start == 0) | 433 | if (start == 0) |
| 428 | return 0; | 434 | return 0; |
| 429 | var min_pos: u64 = std.math.maxInt(u64); | 435 | var min_pos: u64 = std.math.maxInt(u64); |
| 430 | if (self.shdr_table_offset) |off| { | 436 | if (self.phdr_table_index) |index| { |
| | 437 | const off = self.program_headers.items[index].p_offset; |
| 431 | if (off > start and off < min_pos) min_pos = off; | 438 | if (off > start and off < min_pos) min_pos = off; |
| 432 | } | 439 | } |
| 433 | if (self.phdr_table_offset) |off| { | 440 | if (self.shdr_table_offset) |off| { |
| 434 | if (off > start and off < min_pos) min_pos = off; | 441 | if (off > start and off < min_pos) min_pos = off; |
| 435 | } | 442 | } |
| 436 | for (self.sections.items(.shdr)) |section| { | 443 | for (self.sections.items(.shdr)) |section| { |
| ... | @@ -462,96 +469,146 @@ pub fn populateMissingMetadata(self: *Elf) !void { | ... | @@ -462,96 +469,146 @@ pub fn populateMissingMetadata(self: *Elf) !void { |
| 462 | }; | 469 | }; |
| 463 | const ptr_size: u8 = self.ptrWidthBytes(); | 470 | const ptr_size: u8 = self.ptrWidthBytes(); |
| 464 | | 471 | |
| 465 | if (self.phdr_load_re_index == null) { | 472 | { // Program Headers |
| 466 | self.phdr_load_re_index = @intCast(u16, self.program_headers.items.len); | 473 | var new_phdr_table_index: ?u16 = null; |
| 467 | const file_size = self.base.options.program_code_size_hint; | 474 | if (self.phdr_table_index == null) { |
| 468 | const p_align = self.page_size; | 475 | new_phdr_table_index = @intCast(u16, self.program_headers.items.len); |
| 469 | const off = self.findFreeSpace(file_size, p_align); | 476 | const phalign: u16 = switch (self.ptr_width) { |
| 470 | log.debug("found PT_LOAD RE free space 0x{x} to 0x{x}", .{ off, off + file_size }); | 477 | .p32 => @alignOf(elf.Elf32_Phdr), |
| 471 | const entry_addr: u64 = self.entry_addr orelse if (self.base.options.target.cpu.arch == .spu_2) @as(u64, 0) else default_entry_addr; | 478 | .p64 => @alignOf(elf.Elf64_Phdr), |
| 472 | try self.program_headers.append(gpa, .{ | 479 | }; |
| 473 | .p_type = elf.PT_LOAD, | 480 | try self.program_headers.append(gpa, .{ |
| 474 | .p_offset = off, | 481 | .p_type = elf.PT_PHDR, |
| 475 | .p_filesz = file_size, | 482 | .p_offset = undefined, |
| 476 | .p_vaddr = entry_addr, | 483 | .p_filesz = undefined, |
| 477 | .p_paddr = entry_addr, | 484 | .p_vaddr = undefined, |
| 478 | .p_memsz = file_size, | 485 | .p_paddr = undefined, |
| 479 | .p_align = p_align, | 486 | .p_memsz = undefined, |
| 480 | .p_flags = elf.PF_X | elf.PF_R | elf.PF_W, | 487 | .p_align = phalign, |
| 481 | }); | 488 | .p_flags = elf.PF_R, |
| 482 | self.entry_addr = null; | 489 | }); |
| 483 | self.phdr_table_dirty = true; | 490 | self.phdr_table_dirty = true; |
| 484 | } | 491 | } |
| 485 | | 492 | |
| 486 | if (self.phdr_got_index == null) { | 493 | if (self.phdr_table_load_index == null) { |
| 487 | self.phdr_got_index = @intCast(u16, self.program_headers.items.len); | 494 | self.phdr_table_load_index = @intCast(u16, self.program_headers.items.len); |
| 488 | const file_size = @as(u64, ptr_size) * self.base.options.symbol_count_hint; | 495 | // TODO Same as for GOT |
| 489 | // We really only need ptr alignment but since we are using PROGBITS, linux requires | 496 | const phdr_addr: u64 = if (self.base.options.target.cpu.arch.ptrBitWidth() >= 32) 0x1000000 else 0x1000; |
| 490 | // page align. | 497 | try self.program_headers.append(gpa, .{ |
| 491 | const p_align = if (self.base.options.target.os.tag == .linux) self.page_size else @as(u16, ptr_size); | 498 | .p_type = elf.PT_LOAD, |
| 492 | const off = self.findFreeSpace(file_size, p_align); | 499 | .p_offset = undefined, |
| 493 | log.debug("found PT_LOAD GOT free space 0x{x} to 0x{x}", .{ off, off + file_size }); | 500 | .p_filesz = undefined, |
| 494 | // TODO instead of hard coding the vaddr, make a function to find a vaddr to put things at. | 501 | .p_vaddr = phdr_addr, |
| 495 | // we'll need to re-use that function anyway, in case the GOT grows and overlaps something | 502 | .p_paddr = phdr_addr, |
| 496 | // else in virtual memory. | 503 | .p_memsz = undefined, |
| 497 | const got_addr: u32 = if (self.base.options.target.cpu.arch.ptrBitWidth() >= 32) 0x4000000 else 0x8000; | 504 | .p_align = self.page_size, |
| 498 | try self.program_headers.append(gpa, .{ | 505 | .p_flags = elf.PF_R, |
| 499 | .p_type = elf.PT_LOAD, | 506 | }); |
| 500 | .p_offset = off, | 507 | self.phdr_table_dirty = true; |
| 501 | .p_filesz = file_size, | 508 | } |
| 502 | .p_vaddr = got_addr, | 509 | |
| 503 | .p_paddr = got_addr, | 510 | if (self.phdr_load_re_index == null) { |
| 504 | .p_memsz = file_size, | 511 | self.phdr_load_re_index = @intCast(u16, self.program_headers.items.len); |
| 505 | .p_align = p_align, | 512 | const file_size = self.base.options.program_code_size_hint; |
| 506 | .p_flags = elf.PF_R | elf.PF_W, | 513 | const p_align = self.page_size; |
| 507 | }); | 514 | const off = self.findFreeSpace(file_size, p_align); |
| 508 | self.phdr_table_dirty = true; | 515 | log.debug("found PT_LOAD RE free space 0x{x} to 0x{x}", .{ off, off + file_size }); |
| 509 | } | 516 | const entry_addr: u64 = self.entry_addr orelse if (self.base.options.target.cpu.arch == .spu_2) @as(u64, 0) else default_entry_addr; |
| 510 | | 517 | try self.program_headers.append(gpa, .{ |
| 511 | if (self.phdr_load_ro_index == null) { | 518 | .p_type = elf.PT_LOAD, |
| 512 | self.phdr_load_ro_index = @intCast(u16, self.program_headers.items.len); | 519 | .p_offset = off, |
| 513 | // TODO Find a hint about how much data need to be in rodata ? | 520 | .p_filesz = file_size, |
| 514 | const file_size = 1024; | 521 | .p_vaddr = entry_addr, |
| 515 | // Same reason as for GOT | 522 | .p_paddr = entry_addr, |
| 516 | const p_align = if (self.base.options.target.os.tag == .linux) self.page_size else @as(u16, ptr_size); | 523 | .p_memsz = file_size, |
| 517 | const off = self.findFreeSpace(file_size, p_align); | 524 | .p_align = p_align, |
| 518 | log.debug("found PT_LOAD RO free space 0x{x} to 0x{x}", .{ off, off + file_size }); | 525 | .p_flags = elf.PF_X | elf.PF_R | elf.PF_W, |
| 519 | // TODO Same as for GOT | 526 | }); |
| 520 | const rodata_addr: u32 = if (self.base.options.target.cpu.arch.ptrBitWidth() >= 32) 0xc000000 else 0xa000; | 527 | self.entry_addr = null; |
| 521 | try self.program_headers.append(gpa, .{ | 528 | self.phdr_table_dirty = true; |
| 522 | .p_type = elf.PT_LOAD, | 529 | } |
| 523 | .p_offset = off, | 530 | |
| 524 | .p_filesz = file_size, | 531 | if (self.phdr_got_index == null) { |
| 525 | .p_vaddr = rodata_addr, | 532 | self.phdr_got_index = @intCast(u16, self.program_headers.items.len); |
| 526 | .p_paddr = rodata_addr, | 533 | const file_size = @as(u64, ptr_size) * self.base.options.symbol_count_hint; |
| 527 | .p_memsz = file_size, | 534 | // We really only need ptr alignment but since we are using PROGBITS, linux requires |
| 528 | .p_align = p_align, | 535 | // page align. |
| 529 | .p_flags = elf.PF_R | elf.PF_W, | 536 | const p_align = if (self.base.options.target.os.tag == .linux) self.page_size else @as(u16, ptr_size); |
| 530 | }); | 537 | const off = self.findFreeSpace(file_size, p_align); |
| 531 | self.phdr_table_dirty = true; | 538 | log.debug("found PT_LOAD GOT free space 0x{x} to 0x{x}", .{ off, off + file_size }); |
| 532 | } | 539 | // TODO instead of hard coding the vaddr, make a function to find a vaddr to put things at. |
| 533 | | 540 | // we'll need to re-use that function anyway, in case the GOT grows and overlaps something |
| 534 | if (self.phdr_load_rw_index == null) { | 541 | // else in virtual memory. |
| 535 | self.phdr_load_rw_index = @intCast(u16, self.program_headers.items.len); | 542 | const got_addr: u32 = if (self.base.options.target.cpu.arch.ptrBitWidth() >= 32) 0x4000000 else 0x8000; |
| 536 | // TODO Find a hint about how much data need to be in data ? | 543 | try self.program_headers.append(gpa, .{ |
| 537 | const file_size = 1024; | 544 | .p_type = elf.PT_LOAD, |
| 538 | // Same reason as for GOT | 545 | .p_offset = off, |
| 539 | const p_align = if (self.base.options.target.os.tag == .linux) self.page_size else @as(u16, ptr_size); | 546 | .p_filesz = file_size, |
| 540 | const off = self.findFreeSpace(file_size, p_align); | 547 | .p_vaddr = got_addr, |
| 541 | log.debug("found PT_LOAD RW free space 0x{x} to 0x{x}", .{ off, off + file_size }); | 548 | .p_paddr = got_addr, |
| 542 | // TODO Same as for GOT | 549 | .p_memsz = file_size, |
| 543 | const rwdata_addr: u32 = if (self.base.options.target.cpu.arch.ptrBitWidth() >= 32) 0x10000000 else 0xc000; | 550 | .p_align = p_align, |
| 544 | try self.program_headers.append(gpa, .{ | 551 | .p_flags = elf.PF_R | elf.PF_W, |
| 545 | .p_type = elf.PT_LOAD, | 552 | }); |
| 546 | .p_offset = off, | 553 | self.phdr_table_dirty = true; |
| 547 | .p_filesz = file_size, | 554 | } |
| 548 | .p_vaddr = rwdata_addr, | 555 | |
| 549 | .p_paddr = rwdata_addr, | 556 | if (self.phdr_load_ro_index == null) { |
| 550 | .p_memsz = file_size, | 557 | self.phdr_load_ro_index = @intCast(u16, self.program_headers.items.len); |
| 551 | .p_align = p_align, | 558 | // TODO Find a hint about how much data need to be in rodata ? |
| 552 | .p_flags = elf.PF_R | elf.PF_W, | 559 | const file_size = 1024; |
| 553 | }); | 560 | // Same reason as for GOT |
| 554 | self.phdr_table_dirty = true; | 561 | const p_align = if (self.base.options.target.os.tag == .linux) self.page_size else @as(u16, ptr_size); |
| | 562 | const off = self.findFreeSpace(file_size, p_align); |
| | 563 | log.debug("found PT_LOAD RO free space 0x{x} to 0x{x}", .{ off, off + file_size }); |
| | 564 | // TODO Same as for GOT |
| | 565 | const rodata_addr: u32 = if (self.base.options.target.cpu.arch.ptrBitWidth() >= 32) 0xc000000 else 0xa000; |
| | 566 | try self.program_headers.append(gpa, .{ |
| | 567 | .p_type = elf.PT_LOAD, |
| | 568 | .p_offset = off, |
| | 569 | .p_filesz = file_size, |
| | 570 | .p_vaddr = rodata_addr, |
| | 571 | .p_paddr = rodata_addr, |
| | 572 | .p_memsz = file_size, |
| | 573 | .p_align = p_align, |
| | 574 | .p_flags = elf.PF_R | elf.PF_W, |
| | 575 | }); |
| | 576 | self.phdr_table_dirty = true; |
| | 577 | } |
| | 578 | |
| | 579 | if (self.phdr_load_rw_index == null) { |
| | 580 | self.phdr_load_rw_index = @intCast(u16, self.program_headers.items.len); |
| | 581 | // TODO Find a hint about how much data need to be in data ? |
| | 582 | const file_size = 1024; |
| | 583 | // Same reason as for GOT |
| | 584 | const p_align = if (self.base.options.target.os.tag == .linux) self.page_size else @as(u16, ptr_size); |
| | 585 | const off = self.findFreeSpace(file_size, p_align); |
| | 586 | log.debug("found PT_LOAD RW free space 0x{x} to 0x{x}", .{ off, off + file_size }); |
| | 587 | // TODO Same as for GOT |
| | 588 | const rwdata_addr: u32 = if (self.base.options.target.cpu.arch.ptrBitWidth() >= 32) 0x10000000 else 0xc000; |
| | 589 | try self.program_headers.append(gpa, .{ |
| | 590 | .p_type = elf.PT_LOAD, |
| | 591 | .p_offset = off, |
| | 592 | .p_filesz = file_size, |
| | 593 | .p_vaddr = rwdata_addr, |
| | 594 | .p_paddr = rwdata_addr, |
| | 595 | .p_memsz = file_size, |
| | 596 | .p_align = p_align, |
| | 597 | .p_flags = elf.PF_R | elf.PF_W, |
| | 598 | }); |
| | 599 | self.phdr_table_dirty = true; |
| | 600 | } |
| | 601 | |
| | 602 | if (new_phdr_table_index) |index| { |
| | 603 | const phsize: u64 = switch (self.ptr_width) { |
| | 604 | .p32 => @sizeOf(elf.Elf32_Phdr), |
| | 605 | .p64 => @sizeOf(elf.Elf64_Phdr), |
| | 606 | }; |
| | 607 | const phdr_table = &self.program_headers.items[index]; |
| | 608 | phdr_table.p_offset = self.findFreeSpace(self.program_headers.items.len * phsize, @intCast(u32, phdr_table.p_align)); |
| | 609 | self.phdr_table_index = index; |
| | 610 | self.phdr_table_dirty = true; |
| | 611 | } |
| 555 | } | 612 | } |
| 556 | | 613 | |
| 557 | if (self.shstrtab_index == null) { | 614 | if (self.shstrtab_index == null) { |
| ... | @@ -849,19 +906,6 @@ pub fn populateMissingMetadata(self: *Elf) !void { | ... | @@ -849,19 +906,6 @@ pub fn populateMissingMetadata(self: *Elf) !void { |
| 849 | self.shdr_table_dirty = true; | 906 | self.shdr_table_dirty = true; |
| 850 | } | 907 | } |
| 851 | | 908 | |
| 852 | const phsize: u64 = switch (self.ptr_width) { | | |
| 853 | .p32 => @sizeOf(elf.Elf32_Phdr), | | |
| 854 | .p64 => @sizeOf(elf.Elf64_Phdr), | | |
| 855 | }; | | |
| 856 | const phalign: u16 = switch (self.ptr_width) { | | |
| 857 | .p32 => @alignOf(elf.Elf32_Phdr), | | |
| 858 | .p64 => @alignOf(elf.Elf64_Phdr), | | |
| 859 | }; | | |
| 860 | if (self.phdr_table_offset == null) { | | |
| 861 | self.phdr_table_offset = self.findFreeSpace(self.program_headers.items.len * phsize, phalign); | | |
| 862 | self.phdr_table_dirty = true; | | |
| 863 | } | | |
| 864 | | | |
| 865 | { | 909 | { |
| 866 | // Iterate over symbols, populating free_list and last_text_block. | 910 | // Iterate over symbols, populating free_list and last_text_block. |
| 867 | if (self.local_symbols.items.len != 1) { | 911 | if (self.local_symbols.items.len != 1) { |
| ... | @@ -1132,18 +1176,30 @@ pub fn flushModule(self: *Elf, comp: *Compilation, prog_node: *std.Progress.Node | ... | @@ -1132,18 +1176,30 @@ pub fn flushModule(self: *Elf, comp: *Compilation, prog_node: *std.Progress.Node |
| 1132 | .p32 => @sizeOf(elf.Elf32_Phdr), | 1176 | .p32 => @sizeOf(elf.Elf32_Phdr), |
| 1133 | .p64 => @sizeOf(elf.Elf64_Phdr), | 1177 | .p64 => @sizeOf(elf.Elf64_Phdr), |
| 1134 | }; | 1178 | }; |
| 1135 | const phalign: u16 = switch (self.ptr_width) { | 1179 | |
| 1136 | .p32 => @alignOf(elf.Elf32_Phdr), | 1180 | const phdr_table_index = self.phdr_table_index.?; |
| 1137 | .p64 => @alignOf(elf.Elf64_Phdr), | 1181 | const phdr_table = &self.program_headers.items[phdr_table_index]; |
| 1138 | }; | 1182 | const phdr_table_load = &self.program_headers.items[self.phdr_table_load_index.?]; |
| 1139 | const allocated_size = self.allocatedSize(self.phdr_table_offset.?); | 1183 | |
| | 1184 | const allocated_size = self.allocatedSize(phdr_table.p_offset); |
| 1140 | const needed_size = self.program_headers.items.len * phsize; | 1185 | const needed_size = self.program_headers.items.len * phsize; |
| 1141 | | 1186 | |
| 1142 | if (needed_size > allocated_size) { | 1187 | if (needed_size > allocated_size) { |
| 1143 | self.phdr_table_offset = null; // free the space | 1188 | self.phdr_table_index = null; // free the space |
| 1144 | self.phdr_table_offset = self.findFreeSpace(needed_size, phalign); | 1189 | defer self.phdr_table_index = phdr_table_index; |
| | 1190 | phdr_table.p_offset = self.findFreeSpace(needed_size, @intCast(u32, phdr_table.p_align)); |
| 1145 | } | 1191 | } |
| 1146 | | 1192 | |
| | 1193 | phdr_table_load.p_offset = mem.alignBackwardGeneric(u64, phdr_table.p_offset, phdr_table_load.p_align); |
| | 1194 | const load_align_offset = phdr_table.p_offset - phdr_table_load.p_offset; |
| | 1195 | phdr_table_load.p_filesz = load_align_offset + needed_size; |
| | 1196 | phdr_table_load.p_memsz = load_align_offset + needed_size; |
| | 1197 | |
| | 1198 | phdr_table.p_filesz = needed_size; |
| | 1199 | phdr_table.p_vaddr = phdr_table_load.p_vaddr + load_align_offset; |
| | 1200 | phdr_table.p_paddr = phdr_table_load.p_paddr + load_align_offset; |
| | 1201 | phdr_table.p_memsz = needed_size; |
| | 1202 | |
| 1147 | switch (self.ptr_width) { | 1203 | switch (self.ptr_width) { |
| 1148 | .p32 => { | 1204 | .p32 => { |
| 1149 | const buf = try gpa.alloc(elf.Elf32_Phdr, self.program_headers.items.len); | 1205 | const buf = try gpa.alloc(elf.Elf32_Phdr, self.program_headers.items.len); |
| ... | @@ -1155,7 +1211,7 @@ pub fn flushModule(self: *Elf, comp: *Compilation, prog_node: *std.Progress.Node | ... | @@ -1155,7 +1211,7 @@ pub fn flushModule(self: *Elf, comp: *Compilation, prog_node: *std.Progress.Node |
| 1155 | mem.byteSwapAllFields(elf.Elf32_Phdr, phdr); | 1211 | mem.byteSwapAllFields(elf.Elf32_Phdr, phdr); |
| 1156 | } | 1212 | } |
| 1157 | } | 1213 | } |
| 1158 | try self.base.file.?.pwriteAll(mem.sliceAsBytes(buf), self.phdr_table_offset.?); | 1214 | try self.base.file.?.pwriteAll(mem.sliceAsBytes(buf), phdr_table.p_offset); |
| 1159 | }, | 1215 | }, |
| 1160 | .p64 => { | 1216 | .p64 => { |
| 1161 | const buf = try gpa.alloc(elf.Elf64_Phdr, self.program_headers.items.len); | 1217 | const buf = try gpa.alloc(elf.Elf64_Phdr, self.program_headers.items.len); |
| ... | @@ -1167,7 +1223,7 @@ pub fn flushModule(self: *Elf, comp: *Compilation, prog_node: *std.Progress.Node | ... | @@ -1167,7 +1223,7 @@ pub fn flushModule(self: *Elf, comp: *Compilation, prog_node: *std.Progress.Node |
| 1167 | mem.byteSwapAllFields(elf.Elf64_Phdr, phdr); | 1223 | mem.byteSwapAllFields(elf.Elf64_Phdr, phdr); |
| 1168 | } | 1224 | } |
| 1169 | } | 1225 | } |
| 1170 | try self.base.file.?.pwriteAll(mem.sliceAsBytes(buf), self.phdr_table_offset.?); | 1226 | try self.base.file.?.pwriteAll(mem.sliceAsBytes(buf), phdr_table.p_offset); |
| 1171 | }, | 1227 | }, |
| 1172 | } | 1228 | } |
| 1173 | self.phdr_table_dirty = false; | 1229 | self.phdr_table_dirty = false; |
| ... | @@ -1992,13 +2048,14 @@ fn writeElfHeader(self: *Elf) !void { | ... | @@ -1992,13 +2048,14 @@ fn writeElfHeader(self: *Elf) !void { |
| 1992 | | 2048 | |
| 1993 | const e_entry = if (elf_type == .REL) 0 else self.entry_addr.?; | 2049 | const e_entry = if (elf_type == .REL) 0 else self.entry_addr.?; |
| 1994 | | 2050 | |
| | 2051 | const phdr_table_offset = self.program_headers.items[self.phdr_table_index.?].p_offset; |
| 1995 | switch (self.ptr_width) { | 2052 | switch (self.ptr_width) { |
| 1996 | .p32 => { | 2053 | .p32 => { |
| 1997 | mem.writeInt(u32, hdr_buf[index..][0..4], @intCast(u32, e_entry), endian); | 2054 | mem.writeInt(u32, hdr_buf[index..][0..4], @intCast(u32, e_entry), endian); |
| 1998 | index += 4; | 2055 | index += 4; |
| 1999 | | 2056 | |
| 2000 | // e_phoff | 2057 | // e_phoff |
| 2001 | mem.writeInt(u32, hdr_buf[index..][0..4], @intCast(u32, self.phdr_table_offset.?), endian); | 2058 | mem.writeInt(u32, hdr_buf[index..][0..4], @intCast(u32, phdr_table_offset), endian); |
| 2002 | index += 4; | 2059 | index += 4; |
| 2003 | | 2060 | |
| 2004 | // e_shoff | 2061 | // e_shoff |
| ... | @@ -2011,7 +2068,7 @@ fn writeElfHeader(self: *Elf) !void { | ... | @@ -2011,7 +2068,7 @@ fn writeElfHeader(self: *Elf) !void { |
| 2011 | index += 8; | 2068 | index += 8; |
| 2012 | | 2069 | |
| 2013 | // e_phoff | 2070 | // e_phoff |
| 2014 | mem.writeInt(u64, hdr_buf[index..][0..8], self.phdr_table_offset.?, endian); | 2071 | mem.writeInt(u64, hdr_buf[index..][0..8], phdr_table_offset, endian); |
| 2015 | index += 8; | 2072 | index += 8; |
| 2016 | | 2073 | |
| 2017 | // e_shoff | 2074 | // e_shoff |