JIT: Add missing new-style ABI classifiers for LA64 and RISCV64 #100744

Description

@jakobbotsch

#100138 introduced a new representation for ABI information that I am planning on switching the JIT to use in all places that deal with ABI details. It explicitly represents how all parts of all parameters are passed. #100276 and #100526 introduced classifiers for all of our supported targets: win-x86, win-x64, SysV x64, arm64 and arm32.
#100572 is an example PR that is making use of the new ABI representation to rewrite parameter homing.

Before I can proceed with moving the rest of the JIT to the new representation we need implementations of new-style classifiers for LA64 (cc @shushanhf) and RISCV64 (cc @dotnet/samsung). I would greatly appreciate contributions of implementations of these. Otherwise I can try to base it on what happens in lvaInitUserArgs today, but I will not be able to test it.

Once implemented, the following code can be enabled to cross check the new style ABI information against the old one stored in LclVarDsc:

#if defined(TARGET_X86) || defined(TARGET_AMD64) || defined(TARGET_ARM64) || defined(TARGET_ARM)
{
PlatformClassifier classifier(cInfo);
lvaClassifyParameterABI(classifier);
}
#endif
#ifdef DEBUG
if (lvaParameterPassingInfo == nullptr)
{
return;
}
for (unsigned lclNum = 0; lclNum < info.compArgsCount; lclNum++)
{
LclVarDsc* dsc = lvaGetDesc(lclNum);
const ABIPassingInformation& abiInfo = lvaParameterPassingInfo[lclNum];
assert(abiInfo.NumSegments > 0);
if ((dsc->TypeGet() == TYP_STRUCT) && (info.compCallConv == CorInfoCallConvExtension::Swift))
{
continue;
}
unsigned numSegmentsToCompare = abiInfo.NumSegments;
if (dsc->lvIsHfa())
{
// LclVarDsc only has one register set for HFAs
numSegmentsToCompare = 1;
}
#ifdef TARGET_ARM
// On arm the old representation only represents the start register for
// struct multireg args.
if (varTypeIsStruct(dsc))
{
numSegmentsToCompare = 1;
}
// And also for TYP_DOUBLE on soft FP
if (opts.compUseSoftFP && (dsc->TypeGet() == TYP_DOUBLE))
{
numSegmentsToCompare = 1;
}
#endif
for (unsigned i = 0; i < numSegmentsToCompare; i++)
{
const ABIPassingSegment& expected = abiInfo.Segments[i];
regNumber reg = REG_NA;
if (i == 0)
{
reg = dsc->GetArgReg();
}
#if FEATURE_MULTIREG_ARGS
elseif (i == 1)
{
reg = dsc->GetOtherArgReg();
}
#endif
if (expected.IsPassedOnStack())
{
if (i == 0)
{
assert(reg == REG_STK);
// On x86, varargs methods access stack args off of a base pointer, and the
// first stack arg is not considered to be at offset 0.
// TODO-Cleanup: Unify things so that x86 is consistent with other platforms
// here and change fgMorphExpandStackArgForVarArgs to account for that.
#ifndef TARGET_X86
assert((unsigned)dsc->GetStackOffset() == expected.GetStackOffset());
#endif
}
}
else
{
assert(reg == expected.GetRegister());
}
}
}
#endif// DEBUG

Eventually the old information will be removed from LclVarDsc and the new style information will be the only source-of-truth for the ABI information.

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     blocks\n(function() {\n function addCopyButtons() {\n document.querySelectorAll('pre code').forEach(function(codeBlock) {\n if (codeBlock.parentElement.hasAttribute('data-copy-added')) return;\n codeBlock.parentElement.setAttribute('data-copy-added', 'true');\n \n var btn = document.createElement('button');\n btn.textContent = 'Copy';\n btn.style.cssText = 'position:absolute;top:4px;right:4px;padding:2px 8px;font-size:11px;background:#4ecdc4;border:none;border-radius:4px;color:#1a1a2e;cursor:pointer;opacity:0.7;transition:opacity 0.2s;';\n btn.onmouseover = function() { this.style.opacity = '1'; };\n btn.onmouseout = function() { this.style.opacity = '0.7'; };\n btn.onclick = function() {\n navigator.clipboard.writeText(codeBlock.textContent).then(function() {\n btn.textContent = 'Copied!';\n setTimeout(function() { btn.textContent = 'Copy'; }, 1500);\n });\n };\n codeBlock.parentElement.style.position = 'relative';\n codeBlock.parentElement.appendChild(btn);\n });\n }\n \n addCopyButtons();\n \n // Re-run on dynamic content\n var observer = new MutationObserver(addCopyButtons);\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Add Copy Buttons to Code Blocks");
    }
    } catch(__e) { console.warn('[Userscript:Add Copy Buttons to Code Blocks]', __e); }
    })();
    (function(){
    try {
    var __m = "github.com";
    var __re = new RegExp('^' + "github\\.com" + '
    
    Skip to content

    JIT: Add missing new-style ABI classifiers for LA64 and RISCV64 #100744

    Description

    @jakobbotsch

    #100138 introduced a new representation for ABI information that I am planning on switching the JIT to use in all places that deal with ABI details. It explicitly represents how all parts of all parameters are passed. #100276 and #100526 introduced classifiers for all of our supported targets: win-x86, win-x64, SysV x64, arm64 and arm32.
    #100572 is an example PR that is making use of the new ABI representation to rewrite parameter homing.

    Before I can proceed with moving the rest of the JIT to the new representation we need implementations of new-style classifiers for LA64 (cc @shushanhf) and RISCV64 (cc @dotnet/samsung). I would greatly appreciate contributions of implementations of these. Otherwise I can try to base it on what happens in lvaInitUserArgs today, but I will not be able to test it.

    Once implemented, the following code can be enabled to cross check the new style ABI information against the old one stored in LclVarDsc:

    #if defined(TARGET_X86) || defined(TARGET_AMD64) || defined(TARGET_ARM64) || defined(TARGET_ARM)
    {
    PlatformClassifier classifier(cInfo);
    lvaClassifyParameterABI(classifier);
    }
    #endif
    #ifdef DEBUG
    if (lvaParameterPassingInfo == nullptr)
    {
    return;
    }
    for (unsigned lclNum = 0; lclNum < info.compArgsCount; lclNum++)
    {
    LclVarDsc* dsc = lvaGetDesc(lclNum);
    const ABIPassingInformation& abiInfo = lvaParameterPassingInfo[lclNum];
    assert(abiInfo.NumSegments > 0);
    if ((dsc->TypeGet() == TYP_STRUCT) && (info.compCallConv == CorInfoCallConvExtension::Swift))
    {
    continue;
    }
    unsigned numSegmentsToCompare = abiInfo.NumSegments;
    if (dsc->lvIsHfa())
    {
    // LclVarDsc only has one register set for HFAs
    numSegmentsToCompare = 1;
    }
    #ifdef TARGET_ARM
    // On arm the old representation only represents the start register for
    // struct multireg args.
    if (varTypeIsStruct(dsc))
    {
    numSegmentsToCompare = 1;
    }
    // And also for TYP_DOUBLE on soft FP
    if (opts.compUseSoftFP && (dsc->TypeGet() == TYP_DOUBLE))
    {
    numSegmentsToCompare = 1;
    }
    #endif
    for (unsigned i = 0; i < numSegmentsToCompare; i++)
    {
    const ABIPassingSegment& expected = abiInfo.Segments[i];
    regNumber reg = REG_NA;
    if (i == 0)
    {
    reg = dsc->GetArgReg();
    }
    #if FEATURE_MULTIREG_ARGS
    elseif (i == 1)
    {
    reg = dsc->GetOtherArgReg();
    }
    #endif
    if (expected.IsPassedOnStack())
    {
    if (i == 0)
    {
    assert(reg == REG_STK);
    // On x86, varargs methods access stack args off of a base pointer, and the
    // first stack arg is not considered to be at offset 0.
    // TODO-Cleanup: Unify things so that x86 is consistent with other platforms
    // here and change fgMorphExpandStackArgForVarArgs to account for that.
    #ifndef TARGET_X86
    assert((unsigned)dsc->GetStackOffset() == expected.GetStackOffset());
    #endif
    }
    }
    else
    {
    assert(reg == expected.GetRegister());
    }
    }
    }
    #endif// DEBUG

    Eventually the old information will be removed from LclVarDsc and the new style information will be the only source-of-truth for the ABI information.

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      , 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Force GitHub README to respect dark mode\n(function() {\n var style = document.createElement('style');\n style.textContent = '\n .markdown-body {\n color-scheme: dark light;\n }\n .markdown-body pre { background: #161b22 !important; }\n .markdown-body code { background: rgba(110, 118, 129, 0.4) !important; }\n .markdown-body table th, .markdown-body table td { border-color: #30363d !important; }\n .markdown-body img { background: #0d1117; }\n .markdown-body blockquote { border-left-color: #8b949e; }\n .markdown-body hr { border-color: #30363d; }\n ';\n document.head.appendChild(style);\n})();", "GitHub Dark Mode README Fix"); } } catch(__e) { console.warn('[Userscript:GitHub Dark Mode README Fix]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
      Skip to content

      JIT: Add missing new-style ABI classifiers for LA64 and RISCV64 #100744

      Description

      @jakobbotsch

      #100138 introduced a new representation for ABI information that I am planning on switching the JIT to use in all places that deal with ABI details. It explicitly represents how all parts of all parameters are passed. #100276 and #100526 introduced classifiers for all of our supported targets: win-x86, win-x64, SysV x64, arm64 and arm32.
      #100572 is an example PR that is making use of the new ABI representation to rewrite parameter homing.

      Before I can proceed with moving the rest of the JIT to the new representation we need implementations of new-style classifiers for LA64 (cc @shushanhf) and RISCV64 (cc @dotnet/samsung). I would greatly appreciate contributions of implementations of these. Otherwise I can try to base it on what happens in lvaInitUserArgs today, but I will not be able to test it.

      Once implemented, the following code can be enabled to cross check the new style ABI information against the old one stored in LclVarDsc:

      #if defined(TARGET_X86) || defined(TARGET_AMD64) || defined(TARGET_ARM64) || defined(TARGET_ARM)
      {
      PlatformClassifier classifier(cInfo);
      lvaClassifyParameterABI(classifier);
      }
      #endif
      #ifdef DEBUG
      if (lvaParameterPassingInfo == nullptr)
      {
      return;
      }
      for (unsigned lclNum = 0; lclNum < info.compArgsCount; lclNum++)
      {
      LclVarDsc* dsc = lvaGetDesc(lclNum);
      const ABIPassingInformation& abiInfo = lvaParameterPassingInfo[lclNum];
      assert(abiInfo.NumSegments > 0);
      if ((dsc->TypeGet() == TYP_STRUCT) && (info.compCallConv == CorInfoCallConvExtension::Swift))
      {
      continue;
      }
      unsigned numSegmentsToCompare = abiInfo.NumSegments;
      if (dsc->lvIsHfa())
      {
      // LclVarDsc only has one register set for HFAs
      numSegmentsToCompare = 1;
      }
      #ifdef TARGET_ARM
      // On arm the old representation only represents the start register for
      // struct multireg args.
      if (varTypeIsStruct(dsc))
      {
      numSegmentsToCompare = 1;
      }
      // And also for TYP_DOUBLE on soft FP
      if (opts.compUseSoftFP && (dsc->TypeGet() == TYP_DOUBLE))
      {
      numSegmentsToCompare = 1;
      }
      #endif
      for (unsigned i = 0; i < numSegmentsToCompare; i++)
      {
      const ABIPassingSegment& expected = abiInfo.Segments[i];
      regNumber reg = REG_NA;
      if (i == 0)
      {
      reg = dsc->GetArgReg();
      }
      #if FEATURE_MULTIREG_ARGS
      elseif (i == 1)
      {
      reg = dsc->GetOtherArgReg();
      }
      #endif
      if (expected.IsPassedOnStack())
      {
      if (i == 0)
      {
      assert(reg == REG_STK);
      // On x86, varargs methods access stack args off of a base pointer, and the
      // first stack arg is not considered to be at offset 0.
      // TODO-Cleanup: Unify things so that x86 is consistent with other platforms
      // here and change fgMorphExpandStackArgForVarArgs to account for that.
      #ifndef TARGET_X86
      assert((unsigned)dsc->GetStackOffset() == expected.GetStackOffset());
      #endif
      }
      }
      else
      {
      assert(reg == expected.GetRegister());
      }
      }
      }
      #endif// DEBUG

      Eventually the old information will be removed from LclVarDsc and the new style information will be the only source-of-truth for the ABI information.

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        , 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Highlight search terms from Google/DuckDuckGo/Bing referrer\n(function() {\n var ref = document.referrer;\n var terms = [];\n \n if (ref.includes('google.com') || ref.includes('duckduckgo.com') || ref.includes('bing.com')) {\n var url = new URL(ref);\n var q = url.searchParams.get('q') || url.searchParams.get('p');\n if (q) {\n terms = q.split(/\\s+/).filter(function(t) { return t.length > 2; });\n }\n }\n \n if (terms.length === 0) return;\n \n var style = document.createElement('style');\n style.textContent = '.userscript-highlight { background: #fbbf24; color: #1a1a2e; padding: 1px 3px; border-radius: 2px; }';\n document.head.appendChild(style);\n \n function highlight(node) {\n if (node.nodeType === 3) { // text node\n var text = node.textContent;\n var found = false;\n terms.forEach(function(term) {\n var regex = new RegExp('(' + term.replace(/[.*+?^${}()|[\\]\\\\]/g, '\\\\') + ')', 'gi');\n if (regex.test(text)) {\n found = true;\n var frag = document.createDocumentFragment();\n var parts = text.split(regex);\n parts.forEach(function(part, i) {\n if (i % 2 === 0) {\n frag.appendChild(document.createTextNode(part));\n } else {\n var span = document.createElement('span');\n span.className = 'userscript-highlight';\n span.textContent = part;\n frag.appendChild(span);\n }\n });\n node.parentNode.replaceChild(frag, node);\n }\n });\n } else if (node.nodeType === 1 && node.childNodes) { // element\n var skipTags = ['SCRIPT', 'STYLE', 'NOSCRIPT', 'TEXTAREA', 'INPUT', 'SELECT'];\n if (!skipTags.includes(node.tagName)) {\n Array.from(node.childNodes).forEach(highlight);\n }\n }\n }\n \n highlight(document.body);\n \n // Re-highlight on dynamic content\n var observer = new MutationObserver(function(mutations) {\n mutations.forEach(function(m) {\n m.addedNodes.forEach(function(node) {\n if (node.nodeType === 1 || node.nodeType === 3) highlight(node);\n });\n });\n });\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Highlight Search Terms"); } } catch(__e) { console.warn('[Userscript:Highlight Search Terms]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
        Skip to content

        JIT: Add missing new-style ABI classifiers for LA64 and RISCV64 #100744

        Description

        @jakobbotsch

        #100138 introduced a new representation for ABI information that I am planning on switching the JIT to use in all places that deal with ABI details. It explicitly represents how all parts of all parameters are passed. #100276 and #100526 introduced classifiers for all of our supported targets: win-x86, win-x64, SysV x64, arm64 and arm32.
        #100572 is an example PR that is making use of the new ABI representation to rewrite parameter homing.

        Before I can proceed with moving the rest of the JIT to the new representation we need implementations of new-style classifiers for LA64 (cc @shushanhf) and RISCV64 (cc @dotnet/samsung). I would greatly appreciate contributions of implementations of these. Otherwise I can try to base it on what happens in lvaInitUserArgs today, but I will not be able to test it.

        Once implemented, the following code can be enabled to cross check the new style ABI information against the old one stored in LclVarDsc:

        #if defined(TARGET_X86) || defined(TARGET_AMD64) || defined(TARGET_ARM64) || defined(TARGET_ARM)
        {
        PlatformClassifier classifier(cInfo);
        lvaClassifyParameterABI(classifier);
        }
        #endif
        #ifdef DEBUG
        if (lvaParameterPassingInfo == nullptr)
        {
        return;
        }
        for (unsigned lclNum = 0; lclNum < info.compArgsCount; lclNum++)
        {
        LclVarDsc* dsc = lvaGetDesc(lclNum);
        const ABIPassingInformation& abiInfo = lvaParameterPassingInfo[lclNum];
        assert(abiInfo.NumSegments > 0);
        if ((dsc->TypeGet() == TYP_STRUCT) && (info.compCallConv == CorInfoCallConvExtension::Swift))
        {
        continue;
        }
        unsigned numSegmentsToCompare = abiInfo.NumSegments;
        if (dsc->lvIsHfa())
        {
        // LclVarDsc only has one register set for HFAs
        numSegmentsToCompare = 1;
        }
        #ifdef TARGET_ARM
        // On arm the old representation only represents the start register for
        // struct multireg args.
        if (varTypeIsStruct(dsc))
        {
        numSegmentsToCompare = 1;
        }
        // And also for TYP_DOUBLE on soft FP
        if (opts.compUseSoftFP && (dsc->TypeGet() == TYP_DOUBLE))
        {
        numSegmentsToCompare = 1;
        }
        #endif
        for (unsigned i = 0; i < numSegmentsToCompare; i++)
        {
        const ABIPassingSegment& expected = abiInfo.Segments[i];
        regNumber reg = REG_NA;
        if (i == 0)
        {
        reg = dsc->GetArgReg();
        }
        #if FEATURE_MULTIREG_ARGS
        elseif (i == 1)
        {
        reg = dsc->GetOtherArgReg();
        }
        #endif
        if (expected.IsPassedOnStack())
        {
        if (i == 0)
        {
        assert(reg == REG_STK);
        // On x86, varargs methods access stack args off of a base pointer, and the
        // first stack arg is not considered to be at offset 0.
        // TODO-Cleanup: Unify things so that x86 is consistent with other platforms
        // here and change fgMorphExpandStackArgForVarArgs to account for that.
        #ifndef TARGET_X86
        assert((unsigned)dsc->GetStackOffset() == expected.GetStackOffset());
        #endif
        }
        }
        else
        {
        assert(reg == expected.GetRegister());
        }
        }
        }
        #endif// DEBUG

        Eventually the old information will be removed from LclVarDsc and the new style information will be the only source-of-truth for the ABI information.

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          , 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Strip utm_, fbclid, gclid, etc. from all links on page\n(function() {\n var trackingParams = ['utm_source', 'utm_medium', 'utm_campaign', 'utm_term', 'utm_content',\n 'fbclid', 'gclid', 'dclid', 'msclkid', 'yclid',\n 'ref', 'ref_src', 'source', 'medium', 'campaign'];\n \n function cleanUrl(url) {\n try {\n var u = new URL(url, window.location.origin);\n var changed = false;\n trackingParams.forEach(function(p) {\n if (u.searchParams.has(p)) {\n u.searchParams.delete(p);\n changed = true;\n }\n });\n return changed ? u.toString() : url;\n } catch (e) {\n return url;\n }\n }\n \n function cleanLinks() {\n document.querySelectorAll('a[href]').forEach(function(a) {\n var clean = cleanUrl(a.href);\n if (clean !== a.href) a.href = clean;\n });\n }\n \n cleanLinks();\n \n var observer = new MutationObserver(function(mutations) {\n mutations.forEach(function(m) {\n m.addedNodes.forEach(function(node) {\n if (node.nodeType === 1) {\n if (node.tagName === 'A') cleanLinks();\n node.querySelectorAll('a[href]').forEach(function(a) {\n var clean = cleanUrl(a.href);\n if (clean !== a.href) a.href = clean;\n });\n }\n });\n });\n });\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Remove Tracking Parameters from Links"); } } catch(__e) { console.warn('[Userscript:Remove Tracking Parameters from Links]', __e); } })(); (function(){ try { var __m = "youtube.com"; var __re = new RegExp('^' + "youtube\\.com" + '
          Skip to content

          JIT: Add missing new-style ABI classifiers for LA64 and RISCV64 #100744

          Description

          @jakobbotsch

          #100138 introduced a new representation for ABI information that I am planning on switching the JIT to use in all places that deal with ABI details. It explicitly represents how all parts of all parameters are passed. #100276 and #100526 introduced classifiers for all of our supported targets: win-x86, win-x64, SysV x64, arm64 and arm32.
          #100572 is an example PR that is making use of the new ABI representation to rewrite parameter homing.

          Before I can proceed with moving the rest of the JIT to the new representation we need implementations of new-style classifiers for LA64 (cc @shushanhf) and RISCV64 (cc @dotnet/samsung). I would greatly appreciate contributions of implementations of these. Otherwise I can try to base it on what happens in lvaInitUserArgs today, but I will not be able to test it.

          Once implemented, the following code can be enabled to cross check the new style ABI information against the old one stored in LclVarDsc:

          #if defined(TARGET_X86) || defined(TARGET_AMD64) || defined(TARGET_ARM64) || defined(TARGET_ARM)
          {
          PlatformClassifier classifier(cInfo);
          lvaClassifyParameterABI(classifier);
          }
          #endif
          #ifdef DEBUG
          if (lvaParameterPassingInfo == nullptr)
          {
          return;
          }
          for (unsigned lclNum = 0; lclNum < info.compArgsCount; lclNum++)
          {
          LclVarDsc* dsc = lvaGetDesc(lclNum);
          const ABIPassingInformation& abiInfo = lvaParameterPassingInfo[lclNum];
          assert(abiInfo.NumSegments > 0);
          if ((dsc->TypeGet() == TYP_STRUCT) && (info.compCallConv == CorInfoCallConvExtension::Swift))
          {
          continue;
          }
          unsigned numSegmentsToCompare = abiInfo.NumSegments;
          if (dsc->lvIsHfa())
          {
          // LclVarDsc only has one register set for HFAs
          numSegmentsToCompare = 1;
          }
          #ifdef TARGET_ARM
          // On arm the old representation only represents the start register for
          // struct multireg args.
          if (varTypeIsStruct(dsc))
          {
          numSegmentsToCompare = 1;
          }
          // And also for TYP_DOUBLE on soft FP
          if (opts.compUseSoftFP && (dsc->TypeGet() == TYP_DOUBLE))
          {
          numSegmentsToCompare = 1;
          }
          #endif
          for (unsigned i = 0; i < numSegmentsToCompare; i++)
          {
          const ABIPassingSegment& expected = abiInfo.Segments[i];
          regNumber reg = REG_NA;
          if (i == 0)
          {
          reg = dsc->GetArgReg();
          }
          #if FEATURE_MULTIREG_ARGS
          elseif (i == 1)
          {
          reg = dsc->GetOtherArgReg();
          }
          #endif
          if (expected.IsPassedOnStack())
          {
          if (i == 0)
          {
          assert(reg == REG_STK);
          // On x86, varargs methods access stack args off of a base pointer, and the
          // first stack arg is not considered to be at offset 0.
          // TODO-Cleanup: Unify things so that x86 is consistent with other platforms
          // here and change fgMorphExpandStackArgForVarArgs to account for that.
          #ifndef TARGET_X86
          assert((unsigned)dsc->GetStackOffset() == expected.GetStackOffset());
          #endif
          }
          }
          else
          {
          assert(reg == expected.GetRegister());
          }
          }
          }
          #endif// DEBUG

          Eventually the old information will be removed from LclVarDsc and the new style information will be the only source-of-truth for the ABI information.

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          Metadata

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          area-CodeGen-coreclrCLR JIT compiler in src/coreclr/src/jit and related components such as SuperPMI

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            , 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Auto-enable theater mode on YouTube\n(function() {\n function tryTheater() {\n var btn = document.querySelector('button[aria-label=\"Theater mode\"], ytd-player #player button[title=\"Theater mode\"]');\n if (btn && !btn.classList.contains('activated')) {\n btn.click();\n }\n }\n \n // Try immediately\n tryTheater();\n \n // Try after navigation (SPA)\n var lastUrl = location.href;\n setInterval(function() {\n if (location.href !== lastUrl) {\n lastUrl = location.href;\n setTimeout(tryTheater, 500);\n }\n }, 1000);\n \n // Also try on player load\n var observer = new MutationObserver(tryTheater);\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "YouTube Theater Mode Default"); } } catch(__e) { console.warn('[Userscript:YouTube Theater Mode Default]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
            Skip to content

            JIT: Add missing new-style ABI classifiers for LA64 and RISCV64 #100744

            Description

            @jakobbotsch

            #100138 introduced a new representation for ABI information that I am planning on switching the JIT to use in all places that deal with ABI details. It explicitly represents how all parts of all parameters are passed. #100276 and #100526 introduced classifiers for all of our supported targets: win-x86, win-x64, SysV x64, arm64 and arm32.
            #100572 is an example PR that is making use of the new ABI representation to rewrite parameter homing.

            Before I can proceed with moving the rest of the JIT to the new representation we need implementations of new-style classifiers for LA64 (cc @shushanhf) and RISCV64 (cc @dotnet/samsung). I would greatly appreciate contributions of implementations of these. Otherwise I can try to base it on what happens in lvaInitUserArgs today, but I will not be able to test it.

            Once implemented, the following code can be enabled to cross check the new style ABI information against the old one stored in LclVarDsc:

            #if defined(TARGET_X86) || defined(TARGET_AMD64) || defined(TARGET_ARM64) || defined(TARGET_ARM)
            {
            PlatformClassifier classifier(cInfo);
            lvaClassifyParameterABI(classifier);
            }
            #endif
            #ifdef DEBUG
            if (lvaParameterPassingInfo == nullptr)
            {
            return;
            }
            for (unsigned lclNum = 0; lclNum < info.compArgsCount; lclNum++)
            {
            LclVarDsc* dsc = lvaGetDesc(lclNum);
            const ABIPassingInformation& abiInfo = lvaParameterPassingInfo[lclNum];
            assert(abiInfo.NumSegments > 0);
            if ((dsc->TypeGet() == TYP_STRUCT) && (info.compCallConv == CorInfoCallConvExtension::Swift))
            {
            continue;
            }
            unsigned numSegmentsToCompare = abiInfo.NumSegments;
            if (dsc->lvIsHfa())
            {
            // LclVarDsc only has one register set for HFAs
            numSegmentsToCompare = 1;
            }
            #ifdef TARGET_ARM
            // On arm the old representation only represents the start register for
            // struct multireg args.
            if (varTypeIsStruct(dsc))
            {
            numSegmentsToCompare = 1;
            }
            // And also for TYP_DOUBLE on soft FP
            if (opts.compUseSoftFP && (dsc->TypeGet() == TYP_DOUBLE))
            {
            numSegmentsToCompare = 1;
            }
            #endif
            for (unsigned i = 0; i < numSegmentsToCompare; i++)
            {
            const ABIPassingSegment& expected = abiInfo.Segments[i];
            regNumber reg = REG_NA;
            if (i == 0)
            {
            reg = dsc->GetArgReg();
            }
            #if FEATURE_MULTIREG_ARGS
            elseif (i == 1)
            {
            reg = dsc->GetOtherArgReg();
            }
            #endif
            if (expected.IsPassedOnStack())
            {
            if (i == 0)
            {
            assert(reg == REG_STK);
            // On x86, varargs methods access stack args off of a base pointer, and the
            // first stack arg is not considered to be at offset 0.
            // TODO-Cleanup: Unify things so that x86 is consistent with other platforms
            // here and change fgMorphExpandStackArgForVarArgs to account for that.
            #ifndef TARGET_X86
            assert((unsigned)dsc->GetStackOffset() == expected.GetStackOffset());
            #endif
            }
            }
            else
            {
            assert(reg == expected.GetRegister());
            }
            }
            }
            #endif// DEBUG

            Eventually the old information will be removed from LclVarDsc and the new style information will be the only source-of-truth for the ABI information.

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              , 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Remove or un-stick sticky/fixed headers that block content\n(function() {\n function unstick() {\n document.querySelectorAll('header, nav, [role=\"banner\"], .header, .navbar, .sticky, .fixed-top, [style*=\"position: fixed\"], [style*=\"position:sticky\"]').forEach(function(el) {\n if (el.style.position === 'fixed' || el.style.position === 'sticky' || \n getComputedStyle(el).position === 'fixed' || getComputedStyle(el).position === 'sticky') {\n el.style.position = 'static';\n el.style.top = 'auto';\n el.style.zIndex = 'auto';\n }\n });\n }\n \n unstick();\n \n var observer = new MutationObserver(unstick);\n observer.observe(document.body, { childList: true, subtree: true, attributes: true, attributeFilter: ['style', 'class'] });\n})();", "Kill Sticky Headers"); } } catch(__e) { console.warn('[Userscript:Kill Sticky Headers]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
              Skip to content

              JIT: Add missing new-style ABI classifiers for LA64 and RISCV64 #100744

              Description

              @jakobbotsch

              #100138 introduced a new representation for ABI information that I am planning on switching the JIT to use in all places that deal with ABI details. It explicitly represents how all parts of all parameters are passed. #100276 and #100526 introduced classifiers for all of our supported targets: win-x86, win-x64, SysV x64, arm64 and arm32.
              #100572 is an example PR that is making use of the new ABI representation to rewrite parameter homing.

              Before I can proceed with moving the rest of the JIT to the new representation we need implementations of new-style classifiers for LA64 (cc @shushanhf) and RISCV64 (cc @dotnet/samsung). I would greatly appreciate contributions of implementations of these. Otherwise I can try to base it on what happens in lvaInitUserArgs today, but I will not be able to test it.

              Once implemented, the following code can be enabled to cross check the new style ABI information against the old one stored in LclVarDsc:

              #if defined(TARGET_X86) || defined(TARGET_AMD64) || defined(TARGET_ARM64) || defined(TARGET_ARM)
              {
              PlatformClassifier classifier(cInfo);
              lvaClassifyParameterABI(classifier);
              }
              #endif
              #ifdef DEBUG
              if (lvaParameterPassingInfo == nullptr)
              {
              return;
              }
              for (unsigned lclNum = 0; lclNum < info.compArgsCount; lclNum++)
              {
              LclVarDsc* dsc = lvaGetDesc(lclNum);
              const ABIPassingInformation& abiInfo = lvaParameterPassingInfo[lclNum];
              assert(abiInfo.NumSegments > 0);
              if ((dsc->TypeGet() == TYP_STRUCT) && (info.compCallConv == CorInfoCallConvExtension::Swift))
              {
              continue;
              }
              unsigned numSegmentsToCompare = abiInfo.NumSegments;
              if (dsc->lvIsHfa())
              {
              // LclVarDsc only has one register set for HFAs
              numSegmentsToCompare = 1;
              }
              #ifdef TARGET_ARM
              // On arm the old representation only represents the start register for
              // struct multireg args.
              if (varTypeIsStruct(dsc))
              {
              numSegmentsToCompare = 1;
              }
              // And also for TYP_DOUBLE on soft FP
              if (opts.compUseSoftFP && (dsc->TypeGet() == TYP_DOUBLE))
              {
              numSegmentsToCompare = 1;
              }
              #endif
              for (unsigned i = 0; i < numSegmentsToCompare; i++)
              {
              const ABIPassingSegment& expected = abiInfo.Segments[i];
              regNumber reg = REG_NA;
              if (i == 0)
              {
              reg = dsc->GetArgReg();
              }
              #if FEATURE_MULTIREG_ARGS
              elseif (i == 1)
              {
              reg = dsc->GetOtherArgReg();
              }
              #endif
              if (expected.IsPassedOnStack())
              {
              if (i == 0)
              {
              assert(reg == REG_STK);
              // On x86, varargs methods access stack args off of a base pointer, and the
              // first stack arg is not considered to be at offset 0.
              // TODO-Cleanup: Unify things so that x86 is consistent with other platforms
              // here and change fgMorphExpandStackArgForVarArgs to account for that.
              #ifndef TARGET_X86
              assert((unsigned)dsc->GetStackOffset() == expected.GetStackOffset());
              #endif
              }
              }
              else
              {
              assert(reg == expected.GetRegister());
              }
              }
              }
              #endif// DEBUG

              Eventually the old information will be removed from LclVarDsc and the new style information will be the only source-of-truth for the ABI information.

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              area-CodeGen-coreclrCLR JIT compiler in src/coreclr/src/jit and related components such as SuperPMI

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                , 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Universal Dark Mode - works on any site\n(function() {\n var enabled = true;\n \n function applyDarkMode() {\n if (!enabled) return;\n \n // Create style element if it doesn't exist\n var style = document.getElementById('universal-dark-mode-style');\n if (!style) {\n style = document.createElement('style');\n style.id = 'universal-dark-mode-style';\n document.head.appendChild(style);\n }\n \n // Dark mode CSS - inverts colors but preserves images/video\n style.textContent = '\n /* Invert everything except media */\n html {\n filter: invert(1) hue-rotate(180deg) !important;\n background: #1a1a2e !important;\n }\n \n /* Restore images, videos, iframes, canvas */\n img, video, iframe, canvas, svg, picture, [style*=\"background-image\"] {\n filter: invert(1) hue-rotate(180deg) !important;\n }\n \n /* Preserve specific elements that should not be inverted */\n .no-dark-mode, .no-dark-mode *,\n [data-theme=\"light\"], [data-theme=\"light\"],\n .ace_editor, .ace_editor *,\n .CodeMirror, .CodeMirror *,\n .monaco-editor, .monaco-editor *,\n .markdown-body pre, .markdown-body pre *,\n .highlight, .highlight *,\n pre code, pre code * {\n filter: none !important;\n }\n \n /* Fix common UI elements */\n .modal, .popup, .dropdown-menu, .tooltip, .popover {\n filter: invert(1) hue-rotate(180deg) !important;\n background: #2d2d44 !important;\n border-color: #444 !important;\n }\n \n /* Scrollbars */\n ::-webkit-scrollbar { background: #1a1a2e !important; }\n ::-webkit-scrollbar-thumb { background: #444 !important; }\n ::-webkit-scrollbar-thumb:hover { background: #555 !important; }\n \n /* Selection */\n ::selection { background: #4ecdc4 !important; color: #1a1a2e !important; }\n ::-moz-selection { background: #4ecdc4 !important; color: #1a1a2e !important; }\n ';\n }\n \n function removeDarkMode() {\n var style = document.getElementById('universal-dark-mode-style');\n if (style) style.remove();\n }\n \n // Toggle with Alt+Shift+D\n document.addEventListener('keydown', function(e) {\n if (e.altKey && e.shiftKey && e.key === 'D') {\n e.preventDefault();\n enabled = !enabled;\n if (enabled) {\n applyDarkMode();\n console.log('[Universal Dark Mode] Enabled');\n } else {\n removeDarkMode();\n console.log('[Universal Dark Mode] Disabled');\n }\n }\n });\n \n // Apply on load\n applyDarkMode();\n \n // Re-apply on dynamic content\n var observer = new MutationObserver(function(mutations) {\n if (enabled && !document.getElementById('universal-dark-mode-style')) {\n applyDarkMode();\n }\n });\n observer.observe(document.head, { childList: true });\n \n console.log('[Universal Dark Mode] Loaded - Press Alt+Shift+D to toggle');\n})();", "Universal Dark Mode"); } } catch(__e) { console.warn('[Userscript:Universal Dark Mode]', __e); } })(); })();
                Skip to content

                JIT: Add missing new-style ABI classifiers for LA64 and RISCV64 #100744

                Description

                @jakobbotsch

                #100138 introduced a new representation for ABI information that I am planning on switching the JIT to use in all places that deal with ABI details. It explicitly represents how all parts of all parameters are passed. #100276 and #100526 introduced classifiers for all of our supported targets: win-x86, win-x64, SysV x64, arm64 and arm32.
                #100572 is an example PR that is making use of the new ABI representation to rewrite parameter homing.

                Before I can proceed with moving the rest of the JIT to the new representation we need implementations of new-style classifiers for LA64 (cc @shushanhf) and RISCV64 (cc @dotnet/samsung). I would greatly appreciate contributions of implementations of these. Otherwise I can try to base it on what happens in lvaInitUserArgs today, but I will not be able to test it.

                Once implemented, the following code can be enabled to cross check the new style ABI information against the old one stored in LclVarDsc:

                #if defined(TARGET_X86) || defined(TARGET_AMD64) || defined(TARGET_ARM64) || defined(TARGET_ARM)
                {
                PlatformClassifier classifier(cInfo);
                lvaClassifyParameterABI(classifier);
                }
                #endif
                #ifdef DEBUG
                if (lvaParameterPassingInfo == nullptr)
                {
                return;
                }
                for (unsigned lclNum = 0; lclNum < info.compArgsCount; lclNum++)
                {
                LclVarDsc* dsc = lvaGetDesc(lclNum);
                const ABIPassingInformation& abiInfo = lvaParameterPassingInfo[lclNum];
                assert(abiInfo.NumSegments > 0);
                if ((dsc->TypeGet() == TYP_STRUCT) && (info.compCallConv == CorInfoCallConvExtension::Swift))
                {
                continue;
                }
                unsigned numSegmentsToCompare = abiInfo.NumSegments;
                if (dsc->lvIsHfa())
                {
                // LclVarDsc only has one register set for HFAs
                numSegmentsToCompare = 1;
                }
                #ifdef TARGET_ARM
                // On arm the old representation only represents the start register for
                // struct multireg args.
                if (varTypeIsStruct(dsc))
                {
                numSegmentsToCompare = 1;
                }
                // And also for TYP_DOUBLE on soft FP
                if (opts.compUseSoftFP && (dsc->TypeGet() == TYP_DOUBLE))
                {
                numSegmentsToCompare = 1;
                }
                #endif
                for (unsigned i = 0; i < numSegmentsToCompare; i++)
                {
                const ABIPassingSegment& expected = abiInfo.Segments[i];
                regNumber reg = REG_NA;
                if (i == 0)
                {
                reg = dsc->GetArgReg();
                }
                #if FEATURE_MULTIREG_ARGS
                elseif (i == 1)
                {
                reg = dsc->GetOtherArgReg();
                }
                #endif
                if (expected.IsPassedOnStack())
                {
                if (i == 0)
                {
                assert(reg == REG_STK);
                // On x86, varargs methods access stack args off of a base pointer, and the
                // first stack arg is not considered to be at offset 0.
                // TODO-Cleanup: Unify things so that x86 is consistent with other platforms
                // here and change fgMorphExpandStackArgForVarArgs to account for that.
                #ifndef TARGET_X86
                assert((unsigned)dsc->GetStackOffset() == expected.GetStackOffset());
                #endif
                }
                }
                else
                {
                assert(reg == expected.GetRegister());
                }
                }
                }
                #endif// DEBUG

                Eventually the old information will be removed from LclVarDsc and the new style information will be the only source-of-truth for the ABI information.

                Metadata

                Metadata

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                area-CodeGen-coreclrCLR JIT compiler in src/coreclr/src/jit and related components such as SuperPMI

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